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A mini review: Constructing perovskite p-n homojunction solar cells 被引量:1
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作者 Yanan Sun Wei Chen Zhengyi Sun 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第4期1772-1778,共7页
Organic metal halide perovskite materials have excellent photoelectric properties, and the power conversion efficiency(PCE) of the perovskite solar cells(PSCs) has increased from 3.8% to more than 25%. In the developm... Organic metal halide perovskite materials have excellent photoelectric properties, and the power conversion efficiency(PCE) of the perovskite solar cells(PSCs) has increased from 3.8% to more than 25%. In the development of PSCs, innovative architectures were being proposed constantly. However, the use of the electron transport layer(ETL) and hole transport layer(HTL) increases manufacturing costs and process complexity. Perovskite material has ambipolar charge transport characteristics, so it could functionalize as both the optical absorption layer and carrier transport layer(CTL). In this review, we analyzed the p/n-type perovskite materials, perovskite p-n homojunction solar cells, and carrier transport layers-free(CTLs-free) devices. Finally, we propose some innovative device architectures. We hope that this mini review could pave way for the simplification of the architectures, promote the preparation of the low-cost and high-efficiency devices, and accelerate the commercialization of the PSCs. 展开更多
关键词 PEROVSKITE AMBIPOLAR p-n homojunction Solar cell
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TiO_(2)Electron Transport Layer with p-n Homojunctions for Efficient and Stable Perovskite Solar Cells
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作者 Wenhao Zhao Pengfei Guo +8 位作者 Jiahao Wu Deyou Lin Ning Jia Zhiyu Fang Chong Liu Qian Ye Jijun Zou Yuanyuan Zhou Hongqiang Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第10期1-14,共14页
Low-temperature processed electron transport layer(ETL)of TiO_(2)that is widely used in planar perovskite solar cells(PSCs)has inherent low carrier mobility,resulting in insufficient photogenerated elec-tron transport... Low-temperature processed electron transport layer(ETL)of TiO_(2)that is widely used in planar perovskite solar cells(PSCs)has inherent low carrier mobility,resulting in insufficient photogenerated elec-tron transport and thus recombination loss at buried interface.Herein,we demonstrate an effective strategy of laser embedding of p-n homojunctions in the TiO_(2)ETL to accelerate electron transport in PSCs,through localized build-in electric fields that enables boosted electron mobility by two orders of magnitude.Such embedding is found significantly helpful for not only the enhanced crystallization quality of TiO_(2)ETL,but the fabrication of perovskite films with larger-grain and the less-trap-states.The embedded p-n homojunction enables also the modulation of interfacial energy level between perovskite layers and ETLs,favoring for the reduced voltage deficit of PSCs.Benefiting from these merits,the formamidinium lead iodide(FAPbI_(3))PSCs employing such ETLs deliver a champion efficiency of 25.50%,along with much-improved device stability under harsh conditions,i.e.,maintain over 95%of their initial efficiency after operation at maximum power point under continuous heat and illumination for 500 h,as well as mixed-cation PSCs with a champion efficiency of 22.02%and over 3000 h of ambient storage under humidity stability of 40%.Present study offers new possibilities of regulating charge transport layers via p-n homojunction embedding for high performance optoelectronics. 展开更多
关键词 Electron transport layer p-n homojunction Electron mobility Buried interface Perovskite solar cells
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Facile Semiconductor p-n Homojunction Nanowires with Strategic p-Type Doping Engineering Combined with Surface Reconstruction for Biosensing Applications
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作者 Liuan Li Shi Fang +12 位作者 Wei Chen Yueyue Li Mohammad Fazel Vafadar Danhao Wang Yang Kang Xin Liu Yuanmin Luo Kun Liang Yiping Dang Lei Zhao Songrui Zhao Zongzhi Yin Haiding Sun 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第10期15-30,共16页
Photosensors with versatile functionalities have emerged as a cornerstone for breakthroughs in the future optoelectronic systems across a wide range of applications.In particular,emerging photoelectrochemical(PEC)-typ... Photosensors with versatile functionalities have emerged as a cornerstone for breakthroughs in the future optoelectronic systems across a wide range of applications.In particular,emerging photoelectrochemical(PEC)-type devices have recently attracted extensive interest in liquid-based biosensing applications due to their natural electrolyte-assisted operating characteristics.Herein,a PEC-type photosensor was carefully designed and constructed by employing gallium nitride(GaN)p-n homojunction semiconductor nanowires on silicon,with the p-GaN segment strategically doped and then decorated with cobalt-nickel oxide(CoNiO_(x)).Essentially,the p-n homojunction configuration with facile p-doping engineering improves carrier separation efficiency and facilitates carrier transfer to the nanowire surface,while CoNiO_(x)decoration further boosts PEC reaction activity and carrier dynamics at the nanowire/electrolyte interface.Consequently,the constructed photosensor achieves a high responsivity of 247.8 mA W^(-1)while simultaneously exhibiting excellent operating stability.Strikingly,based on the remarkable stability and high responsivity of the device,a glucose sensing system was established with a demonstration of glucose level determination in real human serum.This work offers a feasible and universal approach in the pursuit of high-performance bio-related sensing applications via a rational design of PEC devices in the form of nanostructured architecture with strategic doping engineering. 展开更多
关键词 p-n GaN nanowires Strategic p-doping Surface decoration Photoelectrochemical sensor Glucose sensing
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In-situ generated ordered-disordered Bi_(2)WO_(6)homojunction for enhanced photocatalytic nitrogen fixation performance
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作者 ZHANG Lulu HOU Yahui +2 位作者 LU Yunfei LI Rui LIU Jianxin 《无机化学学报》 北大核心 2026年第3期606-616,共11页
A collection of ordered-disordered Bi_(2)WO_(6)homojunction catalysts was prepared in-situ through a facile one-step hydrothermal process,and their photocatalytic nitrogen fixation to synthesize ammonia performance wa... A collection of ordered-disordered Bi_(2)WO_(6)homojunction catalysts was prepared in-situ through a facile one-step hydrothermal process,and their photocatalytic nitrogen fixation to synthesize ammonia performance was evaluated.Results showed that ordered-disordered Bi_(2)WO_(6)(OD-2)obtained by adding 1.5 mL of ethylene glycol during preparation exhibited the optimal nitrogen fixation performance,with a nitrogen fixation rate of 114.92μmol·g^(-1)·h^(-1).However,its crystal counterpart,Bi_(2)WO_(6)(BWO),lacked nitrogen-fixation activity.In-situ diffuse reflectance-Fourier transform infrared technique(DR-FTIR),electrochemical tests,and energy band structure analysis confirmed that the surface disordered structure in OD-2 not only promoted nitrogen activation but also enabled the effective separation of photogenerated electron-hole pairs at the ordered-disordered interface,facilitating the interface electrons transfer to the surface disordered structure of OD-2 and reacting with N_(2) adsorbed on the disordered structure,thereby promoting the smooth progress of the nitrogen fixation reaction. 展开更多
关键词 ordered-disordered homojunction Bi_(2)WO_(6) photocatalytic nitrogen fixation
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In-situ Z-scheme hetero-phase homojunction significantly enhances the carrier separation efficiency of TiO_(2) nanotube arrays:Key role of crystal phase engineering
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作者 Bicheng Ji Xicheng Li +6 位作者 Shuai Gao Pengyuan Liu Jiajie Bao Lv Qian Changzheng Wang Qiang Wang Chong-Chen Wang 《Chinese Chemical Letters》 2026年第2期721-727,共7页
Light-energy-driven semiconductor catalysis offers attractive ways to address environmental and energy crises.TiO_(2) is the most promising catalyst for photocatalysis,but the lack of charge-carrier separation efficie... Light-energy-driven semiconductor catalysis offers attractive ways to address environmental and energy crises.TiO_(2) is the most promising catalyst for photocatalysis,but the lack of charge-carrier separation efficiency severely limits its catalytic performance.In this study,we carried out crystal phase engineering to prepare in situ Z-scheme hetero-phase homojunction of anatase-rutile and clarified the structure-performance relationship.The efficiency of sulfamerazine removal by hetero-phase homojunction TiO_(2) nanotube arrays in a single-compartment photocatalytic fuel cell system was improved by 1.93 times compared to conventional anatase TiO_(2) nanotube arrays and the degradation pathways were revealed by the Fukui function combined with HP-LCMS.The successful construction of Z-scheme hetero-phase homojunction was confirmed by Raman,X-ray diffraction(XRD),and electron spin resonance(ESR),which combined with density functional theory(DFT)calculations revealed the key role of crystal phase engineering in the construction of hetero-phase homojunction.This work provides a novel strategy for the scientific design of titanium dioxide photocatalysts. 展开更多
关键词 Crystal phase engineering Z-scheme hetero-phase homojunction TiO_(2)nanotube arrays Photocatalytic fuel cells Emerging pollutants
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P-N阻燃剂对低密度纤维板热烟释放性能的影响机制
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作者 康地 张世琰 +2 位作者 李志高 袁利萍 范友华 《建筑材料学报》 北大核心 2026年第3期347-355,共9页
为了提升纤维板的阻燃性能,以氨基三亚甲基膦酸(ATMP)、1,3,5-三(2-羟乙基)氰尿酸(THEIC)和三聚氰胺(MEL)为原料,合成了一种新型P-N阻燃剂1,3,5-三(2-羟乙基-氨基(亚甲基膦酸酯-二-亚甲基磷酸三聚氰胺盐))氰尿酸(TAM),并将其与竹纤维复... 为了提升纤维板的阻燃性能,以氨基三亚甲基膦酸(ATMP)、1,3,5-三(2-羟乙基)氰尿酸(THEIC)和三聚氰胺(MEL)为原料,合成了一种新型P-N阻燃剂1,3,5-三(2-羟乙基-氨基(亚甲基膦酸酯-二-亚甲基磷酸三聚氰胺盐))氰尿酸(TAM),并将其与竹纤维复合,通过热压工艺制备出阻燃低密度纤维板(LDF)。对TAM的化学结构进行了表征,并探讨了其添加量对LDF热解行为和阻燃性能的影响规律。结果表明:新型P-N阻燃剂TAM已成功合成,所制备的LDF具有良好阻燃性能;对比对照试样,当TAM添加量为15%时,LDF的极限氧指数达35.7%,峰值热释放速率(PHRR)降低了20.15%,总烟生成量TSP降低了84.70%,残炭率增加了66.25%;TAM在燃烧过程中通过气相稀释、自由基捕获和酸催化成炭机制,赋予纤维板优异的阻燃性能。 展开更多
关键词 纤维板 p-n阻燃剂 阻燃性能 阻燃机理
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S-scheme regulated Ni_(2)P-NiS/twinned Mn_(0.5)Cd_(0.5)S hetero-homojunctions for efficient photocatalytic H_(2)evolution 被引量:4
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作者 Qiqi Zhang Zhen Wang +3 位作者 Yuhang Song Jun Fan Tao Sun Enzhou Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第2期148-157,共10页
Effective bulk phase and surface charge separation is critical for charge utilization during the photo-catalytic energy conversion process.In this work,the ternary Ni_(2)P-NiS/twinned Mn_(0.5)Cd_(0.5)S(T-MCS)nanohybri... Effective bulk phase and surface charge separation is critical for charge utilization during the photo-catalytic energy conversion process.In this work,the ternary Ni_(2)P-NiS/twinned Mn_(0.5)Cd_(0.5)S(T-MCS)nanohybrids were successfully constructed via combining Ni_(2)P-NiS with T-MCS solid solution for visible light photocatalytic H_(2)evolution.T-MCS is composed of zinc blende Mn_(0.5)Cd_(0.5)S(ZB-MCS)and wurtzite Mn_(0.5)Cd_(0.5)S(WZ-MCS)and those two alternatively arranged crystal phases endow T-MCS with excellent bulk phase charge separation performance for the slight energy level difference between ZB-MCS and WZ-MCS.S-scheme carriers transfer route between NiS and T-MCS can accelerate the interfacial charge separation and retain the active electrons and holes,meanwhile,co-catalyst Ni_(2)P as electron receiver and proton reduction center can further optimize the H_(2)evolution reaction kinetics based on the surface Schottky barrier effect.The above-formed homo-heterojunctions can establish multiple charge transfer channels in the bulk phase of T-MCS and interface of T-MCS and Ni_(2)P-NiS.Under the synergistic effect of twinned homojunction,S-scheme heterojunction,and Schottky barrier,the ternary Ni_(2)P-NiS/T-MCS com-posite manifested an H_(2)production rate of 122.5 mmol h^(-1)g^(-1),which was 1.33,1.24,and 2.58 times higher than those of the NiS/T-MCS(92.4 mmol h^(-1)g^(-1)),Ni_(2)P/T-MCS(98.4 mmol h^(-1)g^(-1)),and T-MCS(47.5 mmol h^(-1)g^(-1)),respectively.This work demonstrates a promising strategy to develop efficient sul-fides photocatalyst toward targeted solar-driven H_(2)evolution through homo-heterojunction engineering. 展开更多
关键词 Photocatalytic H_(2)evolution Twinned Mn_(0.5)Cd_(0.5)S homojunction S-scheme heterojunction Schottky barrier
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氮掺杂石墨烯量子点-NaBiO_(3)/BiOCl p-n异质结光催化剂的制备及可见光催化降解罗丹明B的性能研究
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作者 王津津 伍素云 +3 位作者 刘水林 刘宁 孙爱明 唐新德 《环境科学学报》 北大核心 2026年第2期146-157,共12页
在环境光催化中,提高光生载流子分离效率从而提高光催化性能仍然具有挑战性.本研究通过简单的离子蚀刻和原位沉积方法开发了N掺杂石墨烯量子点(NGQDs)-NaBiO_(3)/BiOCl(NNBC)p-n异质结光催化剂,其在光生电子/空穴对的分离方面表现出优... 在环境光催化中,提高光生载流子分离效率从而提高光催化性能仍然具有挑战性.本研究通过简单的离子蚀刻和原位沉积方法开发了N掺杂石墨烯量子点(NGQDs)-NaBiO_(3)/BiOCl(NNBC)p-n异质结光催化剂,其在光生电子/空穴对的分离方面表现出优异的性能,并对罗丹明B(RhB)显示出显著增强的可见光降解活性,这主要归因于NaBiO_(3)和BiOCl形成的p-n异质结以及NGQDs的强电子转移/存储能力.在NNBC可见光降解RhB的过程中,超氧化自由基和光生空穴为主要活性物种,线性氧是次要活性物种.此外,NNBC复合材料优异的光催化活性和高光稳定性使得其在污染物降解方面具有广阔的应用潜力.本研究为提高商品化的NaBiO_(3)·2H_(2)O在环境应用中的光催化效率提供了一种新的策略. 展开更多
关键词 NGQDs-NaBiO_(3)/BiOCl(NNBC) p-n异质结光催化剂 罗丹明B(RhB) 光催化降解机理 可见光
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Coupling biphasic homojunction interface and oxygen vacancies for enhanced polysulfide capture and catalytic conversion in Li-S batteries
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作者 Hao Wang Shidi Huang +2 位作者 Zhe Cui Jinqi Zhu Rujia Zou 《Journal of Energy Chemistry》 2025年第9期485-494,I0013,共11页
Lithium-sulfur(Li-S)batteries promise high energy density but suffer from low conductivity,polysulfide shuttling,and sluggish conversion kinetics.The construction of heterointerfaces is an effective strategy for enhan... Lithium-sulfur(Li-S)batteries promise high energy density but suffer from low conductivity,polysulfide shuttling,and sluggish conversion kinetics.The construction of heterointerfaces is an effective strategy for enhancing both polysulfide adsorption and conversion;however,the poor lattice compatibility in the heterointerface formed by different materials hinders interfacial charge transfer.In response to these challenges,herein,a biphasic homojunction of TiO_(2)enriched with oxygen vacancies and decorated with nitrogen-doped carbon nanotubes(B-TiO_(2-x)@NCNT)was designed to simultaneously enhance adsorption ability and catalytic activity.This homojunction interface composed of rutile(110)and anatase(101)plane exhibits excellent compatibility,and density functional theory(DFT)calculations reveal that this biphasic interface possesses a much higher binding energy to polysulfides compared to single-phase TiO_(2).Additionally,NCNTs are in situ grown on both interior and exterior surfaces of the hollow TiO_(2)nanospheres,facilitating rapid electron transfer for the encapsulated sulfur.The homojunction interface synergistically leverages the oxygen vacancies and highly conductive NCNTs to enhance the bidirectional catalytic activity for polysulfide conversion.Therefore,in this multifunctional sulfur-host,polysulfides are first strongly adsorbed at the homojunction interfaces and subsequently undergo smooth conversion,nucleation,and decomposition,completing a rapid sulfur redox cycle.The assembled Li-S battery delivered a high specific capacity of 1234.3 mAh g^(-1)at 0.2 C,long cycling stability for over 1000 cycles at 5 C with a low decay rate of 0.035%,and exciting areal capacity at a high sulfur loading of 5.6 mg cm^(-2)for 200cycles. 展开更多
关键词 Li-S batteries Biphasic homojunctions Polysulfides adsorption and conversion TiO_(2)
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Na_(2)CO_(3)-assisted synthesis of Na-doped crystalline/amorphous g-C_(3)N_(4)S-scheme homojunction photocatalyst for enhanced H_(2)O_(2)production
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作者 Lihong Tan Xinhe Wu +2 位作者 Jiachao Xu Mahmoud Sayed Guohong Wang 《Chinese Journal of Catalysis》 2025年第12期174-185,共12页
The construction of crystalline/amorphous g-C_(3)N_(4)homojunctions presents a versatile strategy to obtain all-organic homojunction photocatalysts with better interface matching and lower interface charge carrier mov... The construction of crystalline/amorphous g-C_(3)N_(4)homojunctions presents a versatile strategy to obtain all-organic homojunction photocatalysts with better interface matching and lower interface charge carrier movement resistance for optimized photocatalytic activity.However,the process entails a complex multi-step workup,which compromises its feasibility.To overcome this challenge,this work provided an innovative Na_(2)CO_(3)-induced crystallinity modulation strategy to construct a Na-doped crystalline/amorphous g-C_(3)N_(4)S-scheme homojunction photocatalyst in a single step.The approach involves the initial pre-assembling of melamine and cyanuric acid molecules,and subsequent introduction of Na_(2)CO_(3)before the calcination.Na_(2)CO_(3)plays key roles to induce in-situ crystallinity modulation during the calcination and as a source for Na-doping.The prepared g-C_(3)N_(4)S-scheme homojunction photocatalyst demonstrated a prominent H_(2)O_(2)-production rate of 444.6μmol·L^(-1)·h^(-1),which is 6.1-fold higher than that of bulk g-C_(3)N_(4).The enhanced activity was attributed to the synergistic effect of charge carrier separation induced by the S-scheme homojunction system,and the optimized interfacial H_(2)O_(2)generation kinetics.The latter was fostered by the Na-doping.This study provides an innovative approach for the one-step construction of g-C_(3)N_(4)S-scheme homojunction and its integration in photocatalytic applications. 展开更多
关键词 Photocatalysis S-scheme homojunction Crystalline/amorphous g-C_(3)N_(4) Crystallinity modulation H_(2)O_(2)production
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High mobility ultrathin ZnO p–n homojunction modulated by Zn_(0.85)Mg_(0.15)O quantum barriers
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作者 Jing-Jing Yang Qing-Qing Fang +2 位作者 Wen-Han Du Ke-Ke Zhang Da-Shun Dong 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第3期464-468,共5页
The adding of ZnMgO asymmetric double barriers(ADB)in p-ZnO2(Li,N)/n-ZnO homojunction affects the p-n junction device performance prominently.Two different homojunctions are fabricated on Si(100)substrates by pulsed l... The adding of ZnMgO asymmetric double barriers(ADB)in p-ZnO2(Li,N)/n-ZnO homojunction affects the p-n junction device performance prominently.Two different homojunctions are fabricated on Si(100)substrates by pulsed laser deposition;one is the traditional p-ZnO2(Li,N)/n-ZnO homojunction with different thicknesses named as S_(1)(250 nm)and S2(500 nm),the other is the one with ADB embedded in the n-layer named as Q(265 nm).From the photoluminescence spectra,defect luminescence present in the S-series devices is effectively limited in the Q device.The current-voltage curve of the Q device shows Zener-diode rectification property because the two-dimensional electron gas tunnels through the narrow ZnMgO barrier under a reverse bias,thus decreasing the working p-n homojunction thickness from 500 nm to 265 nm.The ADB-modified homojunction shows higher carrier mobility in the Q device.The electroluminescence of the ZnO homojunction is improved in Q compared to S_(2),because the holes in p-type ZnO(Li,N)can cross the wide ZnMgO barrier under a forward bias voltage into the ZnO quantum well.Therefore,electron-hole recombination occurs in the narrow bandgap of n-type ZnO,creating an ultraviolet light-emitting diode using the ZnO homojunction. 展开更多
关键词 ZnO p-n homojunction light-emitting diodes ZnMgO asymmetric double barriers
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Spatially Bandgap-Graded Mo S2(1-x)Se2x Homojunctions for Self-Powered Visible–Near-Infrared Phototransistors 被引量:7
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作者 Hao Xu Juntong Zhu +10 位作者 Guifu Zou Wei Liu Xiao Li Caihong Li Gyeong Hee Ryu Wenshuo Xu Xiaoyu Han Zhengxiao Guo Jamie HWarner Jiang Wu Huiyun Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第2期185-198,共14页
Ternary transition metal dichalcogenide alloys with spatially graded bandgaps are an emerging class of two-dimensional materials with unique features,which opens up new potential for device applications.Here,visible–... Ternary transition metal dichalcogenide alloys with spatially graded bandgaps are an emerging class of two-dimensional materials with unique features,which opens up new potential for device applications.Here,visible–near-infrared and self-powered phototransistors based on spatially bandgap-graded MoS2(1−x)Se2x alloys,synthesized by a simple and controllable chemical solution deposition method,are reported.The graded bandgaps,arising from the spatial grading of Se composition and thickness within a single domain,are tuned from 1.83 to 1.73 eV,leading to the formation of a homojunction with a builtin electric field.Consequently,a strong and sensitive gate-modulated photovoltaic effect is demonstrated,enabling the homojunction phototransistors at zero bias to deliver a photoresponsivity of 311 mA W−1,a specific detectivity up to^10^11 Jones,and an on/off ratio up to^10^4.Remarkably,when illuminated by the lights ranging from 405 to 808 nm,the biased devices yield a champion photoresponsivity of 191.5 A W−1,a specific detectivity up to^1012 Jones,a photoconductive gain of 10^6–10^7,and a photoresponsive time in the order of^50 ms.These results provide a simple and competitive solution to the bandgap engineering of two-dimensional materials for device applications without the need for p–n junctions. 展开更多
关键词 Transition metal dichalcogenides Graded bandgaps homojunctionS PHOTOTRANSISTORS SELF-POWERED
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Thickness-modulated in-plane Bi2O2Se homojunctions for ultrafast high-performance photodetectors 被引量:4
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作者 Cheng-Yun Hong Gang-Feng Huang +2 位作者 Wen-Wen Yao Jia-Jun Deng Xiao-Long Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第12期363-369,共7页
Bi2O2Se thin film could be one of the promising material candidates for the next-generation electronic and optoelectronic applications. However, the performance of Bi2O2Se thin film-based device is not fully explored ... Bi2O2Se thin film could be one of the promising material candidates for the next-generation electronic and optoelectronic applications. However, the performance of Bi2O2Se thin film-based device is not fully explored in the photodetecting area. Considering the fact that the electrical properties such as carrier mobility, work function, and energy band structure of Bi2O2Se are thickness-dependent, the in-plane Bi2O2Se homojunctions consisting of layers with different thicknesses are successfully synthesized by the chemical vapor deposition(CVD) method across the terraces on the mica substrates,where terraces are created in the mica surface layer peeling off process. In this way, effective internal electrical fields are built up along the Bi2O2Se homojunctions, exhibiting diode-like rectification behavior with an on/off ratio of 102, what is more, thus obtained photodetectors possess highly sensitive and ultrafast features, with a maximum photoresponsivity of 2.5 A/W and a lifetime of 4.8 μs. Comparing with the Bi2O2Se uniform thin films, the photo-electric conversion efficiency is greatly improved for the in-plane homojunctions. 展开更多
关键词 Bi2O2Se in-plane homojunction thickness modulation PHOTODETECTORS
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A Self-Powered Fast-Response Ultraviolet Detector of p–n Homojunction Assembled from Two ZnO-Based Nanowires 被引量:4
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作者 Yumei Wang Ying Chen +8 位作者 Wanqiu Zhao Longwei Ding Li Wen Haixia Li Fan Jiang Jun Su Luying Li Nishuang Liu Yihua Gao 《Nano-Micro Letters》 SCIE EI CAS 2017年第1期130-136,共7页
Nowadays, fabrication of micro/nano-scale electronic devices with bottom-up approach is paid much research attention. Here, we provide a novel micro/nano-assembling method, which is accurate and efficient, especially ... Nowadays, fabrication of micro/nano-scale electronic devices with bottom-up approach is paid much research attention. Here, we provide a novel micro/nano-assembling method, which is accurate and efficient, especially suitable for the fabrication of micro/nano-scale electronic devices. Using this method, a self-powered ZnO/Sb-doped ZnO nanowire p–n homojunction ultraviolet detector(UVD) was fabricated, and the detailed photoelectric properties were tested. At a reverse bias of -0.1 V under UV light illumination, the photoresponse sensitivity of the UVD was 26.5 and the rise/decay time of the UVD was as short as 30 ms. The micro/nano-assembling method has wide potential applications in the fabrication of specific micro/nano-scale electronic devices. 展开更多
关键词 Zinc oxide Micro/nano-assembling p–n homojunction Ultraviolet photodetector
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Gradient Si-and Ti-doped Fe_(2)O_(3) hierarchical homojunction photoanode for efficient solar water splitting:Effect of facile microwave-assisted growth of Si-FeOOH on Ti-FeOOH nanocorals 被引量:3
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作者 Tae Sik Koh Periyasamy Anushkkaran +3 位作者 Weon-Sik Chae Hyun Hwi Lee Sun Hee Choi Jum Suk Jang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期27-37,I0002,共12页
The construction of a homojunction is an effective approach for addressing issues such as slow charge separation and charge-transfer kinetics in photoanodes.In the present work,we designed a gradient Si-and Ti-doped F... The construction of a homojunction is an effective approach for addressing issues such as slow charge separation and charge-transfer kinetics in photoanodes.In the present work,we designed a gradient Si-and Ti-doped Fe_(2)O_(3) homojunction photoanode to improve the photoelectrochemical(PEC)performance of a Ti-doped Fe_(2)O_(3) photoanode.Ti-FeOOH nanocorals were synthesized using a hydrothermal process,and Si-FeOOH was grown on Ti-FeOOH nanocorals using a rapid and facile microwaveassisted(MW)technique.By varying the MW irradiation time,the thickness of the Si/Ti:Fe_(2)O_(3) photoanode was adjusted and an optimized 3-Si/Ti:Fe_(2)O_(3) photoelectrode was achieved with a significantly enhanced photocurrent density(1.37 mA cm^(-2) at 1.23 V vs.RHE)and a cathodic shift of the onset potential(150 mV)compared with that of bare Ti-Fe_(2)O_(3).This enhanced PEC performance can be ascribed to homojunction formation and Si gradient doping.The Si dopant increased the donor concentration and the formation of a homojunction improved the intrinsic built-in electric field,thereby promoting charge separation and charge transfer.Furthermore,the as-formed homojunction passivated the surfacetrapping states,consequently improving the charge transfer efficiency(60%at 1.23 VRHE)at the photoanode/electrolyte interface.These findings could pave the way for the microwave-assisted fabrication of diverse efficient homojunction photoanodes for PEC water splitting applications. 展开更多
关键词 homojunction MICROWAVE-ASSISTED Hematite Gradient doping PEC water splitting
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Tune the electronic structure of MoS_(2)homojunction for broadband photodetection 被引量:2
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作者 Rui Tao Xianlin Qu +6 位作者 Zegao Wang Fang Li Lei Yang Jiheng Li Dan Wang Kun Zheng Mingdong Dong 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第24期61-68,共8页
Due to the weak absorption and low light-matter interaction of MoS_(2),intrinsic MoS_(2)photodetector usually has low photoresponse,thus limiting its real application.Herein,MoS_(2)homojunction was constructed by usin... Due to the weak absorption and low light-matter interaction of MoS_(2),intrinsic MoS_(2)photodetector usually has low photoresponse,thus limiting its real application.Herein,MoS_(2)homojunction was constructed by using the chemical vapor deposition grown intrinsic MoS_(2)films and the Nb-doped MoS_(2)films.The results show that the Nb doping will induce p-type doping in MoS_(2),where the electron concentration will decrease by 2.08×10^(12)cm^(–2)after Nb doping.By investigating the photoelectric effect of MoS_(2)/Nb-doped MoS_(2)homojunction-based phototransistor,the tunability of the photoresponse,detectivity as the function of the external field,wavelength,and power of light have been studied in detail.The results show that the photoresponse and detectivity are strongly dependent on the gate voltage due to the external field tuned interlayer photoexcitation attributing to the band bending.The maximum of photoresponse can reach 51.4 A/W,the detectivity can reach 3.0×10^(12)Jones,which is two orders higher than that of intrinsic MoS_(2).Furthermore,by correlating the photoresponse and detectivity with the external field,it is found that the photodetection of MoS_(2)homojunction can be significantly tuned and exhibit well photodetection in infrared.This comprehensive work not only sheds light on the tunable photoexcitation mechanism but also offers a strategy to achieve a high-performance photodetector. 展开更多
关键词 Molybdenum disulfide P-type doping homojunction PHOTORESPONSE TUNABILITY
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Constructing low-cost Ni3C/twin-crystal Zn0.5Cd0.5S heterojunction/homojunction nanohybrids for efficient photocatalytic H2 evolution 被引量:10
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作者 Rongchen Shen Yingna Ding +4 位作者 Shibang Li Peng Zhang Quanjun Xiang Yun Hau Ng Xin Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第1期25-36,共12页
The development of low-cost semiconductor photocatalysts for highly efficient and durable photocatalytic H2 evolution under visible light is very challenging.In this study,we combine low-cost metallic Ni3C cocatalysts... The development of low-cost semiconductor photocatalysts for highly efficient and durable photocatalytic H2 evolution under visible light is very challenging.In this study,we combine low-cost metallic Ni3C cocatalysts with twin nanocrystal Zn0.5Cd0.5S(ZCS)solid solution homojunctions for an efficient visible-light-driven H2 production by a simple approach.As-synthesized Zn0.5Cd0.5S-1%Ni3C(ZCS-1)heterojunction/homojunction nanohybrid exhibited the highest photocatalytic H2-evolution rate of 783μmol h‒1 under visible light,which is 2.88 times higher than that of pristine twin nanocrystal ZCS solid solution.The apparent quantum efficiencies of ZCS and ZCS-1 are measured to be 6.13%and 19.25%at 420 nm,respectively.Specifically,the homojunctions between the zinc blende and wurtzite segments in twin nanocrystal ZCS solid solution can significantly improve the light absorption and separation of photogenerated electron-hole pairs.Furthermore,the heterojunction between ZCS and metallic Ni3C NP cocatalysts can efficiently trap excited electrons from ZCS solid solution and enhance the H2-evolution kinetics at the surface for improving catalytic activity.This study demonstrates a unique one-step strategy for constructing heterojunction/homojunction hybrid nanostructures for a more efficient photocatalytic H2 evolution compared to other noble metal photocatalytic systems. 展开更多
关键词 Photocatalytic H2 evolution Zn0.5Cd0.5S solid solution Twin nanocrystal Heterojunction/homojunction Earth-abundant Ni3C cocatalysts
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Acid-induced topological morphology modulation of graphitic carbon nitride homojunctions as advanced metal-free catalysts for OER and pollutant degradation 被引量:2
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作者 Hua-Wei Zhang Yi-Xin Lu +6 位作者 Bo Li Gui-Fang Huang Fan Zeng Yuan-Yuan Li Anlian Pan Yi-Feng Chai Wei-Qing Huang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第27期210-218,共9页
Topological morphology that dominates the surface electronic properties of nanostructures plays a key role in producing desired materials for versatile functions and applications in many fields,but its modulation for ... Topological morphology that dominates the surface electronic properties of nanostructures plays a key role in producing desired materials for versatile functions and applications in many fields,but its modulation for specific functions remains a big challenge.Herein,we report an acid-induced method to prepare S-doped graphitic carbon nitride/graphitic carbon nitride(S-CN/CN)homojunction by simply pyrolyzing a supramolecular precursor synthesized from melamine and H_(2)SO_(4).The topological morphology and electronic structure of CN homojunction can be easily adjusted only by changing the ratio of raw materials.Moreover,the topological morphology of S-CN/CN homojunction can be further adjusted from hollow cocoon to 2D nanosheets by changing the annealing conditions.The optimized S-CN/CN homojunction shows highly efficient in charge transfer and separation and exhibits superior OER activity and high ability to degrade organic pollutants.Impressively,S-CN/CN nanosheets only demand low overpotential of301 m V to drive a current density of 10 m Acm^(-2)in 1 M KOH media,and the corresponding Tafel slope is only 57.71 m V/dec,which is superior to the most advanced precious metal Ir O_(2)catalyst.Moreover,under visible light irradiation,its photodegradation kinetic rate of Rh B is 2.38,which is 47.6 times higher than that of bulk CN.This work provides useful guidance for designing and developing efficient multifunctional metal-free catalysts. 展开更多
关键词 Topological morphology Acid-induced Molecular self-assembly S-CN/CN homojunction OER
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Tunning the bandgap of MnO_(2)homojunction by building active high-index facet to achieve rapid electron transfer for enhanced photocatalytic sterilization 被引量:1
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作者 Tao Zhang Bo Li +9 位作者 Chaofeng Wang Shuilin Wu Shengli Zhu Hui Jiang Yufeng Zheng Zhaoyang Li Zhenduo Cui Yu Zhang Paul K Chu Xiangmei Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第1期265-275,共11页
Photocatalysis has been a research hotspot in recent years,and the design and modification of photocat-alysts have been the key points.Common methods for designing photocatalysts,including constructing heterojunctions... Photocatalysis has been a research hotspot in recent years,and the design and modification of photocat-alysts have been the key points.Common methods for designing photocatalysts,including constructing heterojunctions and homojunctions,have been developed on the basis of heterojunctions.In this study,two homojunctions of manganese dioxide(MnO_(2)),including a high-index crystal plane homojunction and a general homojunction,are prepared using a stepwise hydrothermal method.Using a capping agent,the high-index crystal surface of the MnO_(2)is exposed.It is found that the electron transport efficiency be-tween the two components of the homojunction with high-index planes is higher and the adsorption capacity of the oxygen is stronger,which leads to higher photocatalytic efficiency.In addition,the newly designed high-index homojunction is used for the treatment of bacterial infections,and it kills Staphy-lococcus aureus(S.aureus)and Escherichia coli(E.coli)at rates of 99.95%±0.04%and 99.31%±0.25%,respectively.It also has excellent therapeutic effects on mouse wounds,which implies superb practical application value.This work provides a new strategy for the improved design of homojunctions and the application of photocatalytic materials. 展开更多
关键词 Photocatalysis homojunction Bandgap High-index facet Antibacterial
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Fabrication of Bi_2WO_6 quantum dots/ultrathin nanosheets 0D/2D homojunctions with enhanced photocatalytic activity under visible light irradiation 被引量:1
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作者 Jingjing Xu Junpeng Yue +2 位作者 Junpeng Yue Mindong Chen Fei Teng 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第12期1910-1918,共9页
A novel visible light‐responsive homogeneous catalyst based on Bi2WO6 quantum dots(QDs‐BWO)/Bi2WO6 nanosheets(N‐BWO)was successfully fabricated through a simple hydrothermal method.A variety of techniques were empl... A novel visible light‐responsive homogeneous catalyst based on Bi2WO6 quantum dots(QDs‐BWO)/Bi2WO6 nanosheets(N‐BWO)was successfully fabricated through a simple hydrothermal method.A variety of techniques were employed to investigate the morphology,structure,and electronic properties of the samples.The photocatalytic performance of the QDs/N‐BWO materials was investigated by monitoring the degradation of 4‐chlorophenol and rhodamine B under visible light irradiation.The as‐fabricated QDs/N‐BWO materials showed higher photocatalytic activity than both QDs‐BWO and N‐BWO.The results reveal that the incorporation of the QDs improved the separation efficiency of electron‐hole pairs,leading to enhanced photocatalytic activity.Moreover,the results of quenching experiments show that·O2– species played a major role in the degradation process.This work provides an important reference for the fabrication of homogeneous catalysts with high performance in the degradation of different types of pollutants. 展开更多
关键词 Bi2WO6 Quantum dots NANOSHEET Photocatalysis homojunction
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