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Optimizing Exciton and Charge-Carrier Behavior in Thick-Film Organic Photovoltaics:A Comprehensive Review
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作者 Lu Wei Yaxin Yang +2 位作者 Lingling Zhan Shouchun Yin Hongzheng Chen 《Nano-Micro Letters》 2026年第1期229-267,共39页
Organic photovoltaics(OPVs)have achieved remarkable progress,with laboratory-scale single-junction devices now demonstrating power conversion efficiencies(PCEs)exceeding 20%.However,these efficiencies are highly depen... Organic photovoltaics(OPVs)have achieved remarkable progress,with laboratory-scale single-junction devices now demonstrating power conversion efficiencies(PCEs)exceeding 20%.However,these efficiencies are highly dependent on the thickness of the photoactive layer,which is typically around 100 nm.This sensitivity poses a challenge for industrial-scale fabrication.Achieving high PCEs in thick-film OPVs is therefore essential.This review systematically examines recent advancements in thick-film OPVs,focusing on the fundamental mechanisms that lead to efficiency loss and strategies to enhance performance.We provide a comprehensive analysis spanning the complete photovoltaic process chain:from initial exciton generation and diffusion dynamics,through dissociation mechanisms,to subsequent charge-carrier transport,balance optimization,and final collection efficiency.Particular emphasis is placed on cutting-edge solutions in molecular engineering and device architecture optimization.By synthesizing these interdisciplinary approaches and investigating the potential contributions in stability,cost,and machine learning aspects,this work establishes comprehensive guidelines for designing high-performance OPVs devices with minimal thickness dependence,ultimately aiming to bridge the gap between laboratory achievements and industrial manufacturing requirements. 展开更多
关键词 Organic photovoltaics thick-film EXCITON Charge-carrier Photovoltaic performances
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Efficient micrometer-scale thick-film perovskite solar cells with superior stability 被引量:1
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作者 Jian-Fei Hu Gang Chen +10 位作者 Shun-Zhang Yu Yue-Xin Lin Kai-Yu Wang Zong-Wei Li Guo-Dong Zhang Teng-Fei Pan Ya-Jing Li Ming-Jie Li Ying-Dong Xia Yi-Fan Lv Yong-Hua Chen 《Rare Metals》 SCIE EI CAS CSCD 2024年第4期1647-1657,共11页
It is essential to enhance the thickness of the absorber layer for perovskite solar cells(PSCs)to improve device performance and reduce industry refinement.However,thick perovskite films(>1μm)are difficult to be f... It is essential to enhance the thickness of the absorber layer for perovskite solar cells(PSCs)to improve device performance and reduce industry refinement.However,thick perovskite films(>1μm)are difficult to be fabricated by employing traditional solvents,such as N,N-dimethylformamide(DMF),dimethyl sulfoxide(DMSO).Besides,it is a challenge to fabricate thick-film perovskite owing to the deteriorated surface morphology and serious defect density.Herein,a simple method was reported to deposit uniform pinhole-free perovskite films with a thickness of more than 2μm utilizing the methylamine acetate(MAAc)ionic liquid as the solvent.Combined with methylammonium chloride(MACl)as an additive,thick-film perovskite with~2μm in grain size and few grain boundaries(GBs)was prepared,which dramatically improved the perovskite crystal quality and enhanced carrier transport performance.The final PSCs exhibited a power conversion efficiency(PCE)of 20.16%.The device showed improved stability with 95%of its initial efficiency in a nitrogen environment over 5000 h.This work provides an alternative strategy to produce extremely efficient and stable thick-film PSCs.It can be believed that this device has great potential in the application of large areas and laminated PSCs. 展开更多
关键词 Perovskite solar cells thick-film STABILITY Ionic liquid
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Preparation of Lead-free Thick-film Resistor Pastes
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作者 LUO Hui LI Shihong +3 位作者 LIU Jisong CHEN Liqiao YING Xingang WANG Ke 《贵金属》 CAS CSCD 北大核心 2012年第A01期111-116,共6页
The preparation of lead-free thick-film resistors are reported:using RuO 2 and ruthenates as conductive particles,glass powders composed of B 2 O 3,SiO 2,CaO and Al2 O 3 as insulating phase,adding organic matter which... The preparation of lead-free thick-film resistors are reported:using RuO 2 and ruthenates as conductive particles,glass powders composed of B 2 O 3,SiO 2,CaO and Al2 O 3 as insulating phase,adding organic matter which mainly consists of ethyl cellulose and terpineol to form printable pastes.Resistors were fabricated and sintered by conventional screen-printing on 96%Al 2 O 3 substrates,and then sintering in a belt furnace.X-ray diffraction(XRD) and electron scanning microscopy(SEM) have been used to characterize the conductive particles.The resistors exhibit good refiring stability and low temperature coefficient of resistance.Sheet resistance spans from about 80Ω/□ to 600Ω/□.The resistors prepared are qualified for common use. 展开更多
关键词 LEAD-FREE RUO2 thick-film resistor pastes
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Benzothieno[1,2-b]furan:an atomically symmetric-breaking volatile solid additive for high-performance thick-film planar heterojunction organic solar cells
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作者 Tianyu Hu Liangliang Chen +9 位作者 Wentao Miao Chao Li Jiali Song Yuchen Liao Junhong Liang Jingyi Xiong Xunchang Wang Yanming Sun He Yan Renqiang Yang 《Science China Chemistry》 2026年第3期1273-1281,共9页
The fabrication of thick active layers in organic solar cells(OSCs)is essential for roll-to-roll commercial production.However,thicker layers often lead to a notable decline in device performance,mainly due to the lim... The fabrication of thick active layers in organic solar cells(OSCs)is essential for roll-to-roll commercial production.However,thicker layers often lead to a notable decline in device performance,mainly due to the limited exciton diffusion length(L_(D)).Herein,we fabricated efficient thick-film planar heterojunction(PHJ)OSCs via the assistance of a new volatile solid additive(VSA)benzothieno[1,2-b]furan(TBF),featuring with atomically symmetric breaking skeleton.The asymmetric VSA treatment not only constructed a long-range ordered yet moderately loose molecular packing,but also induced an increased dielectric screening effect in the L8-BO-X layer through enhancing dipole interactions and mitigating exciton binding energy,simultaneously yielding a substantially higher photoluminescence quantum yield(PLQY)and effectively suppressing exciton-vibration coupling than the symmetric VSA counterparts benzo[1,2-b:4,5-b′]dithiophene(BDT)and benzo[1,2-b:4,5-b]difuran(BDF).Consequently,the TBF-treated film exhibits an extended L_(D)>40 nm,favoring exciton dissociation,and charge generation/transport,as well as reducing energy disorder.Remarkably,TBF-based empowered devices achieve high PCEs of 20.4%,18.5%,and 16.5%at 110-,300-,and 500-nm thicknesses,respectively,demonstrating exceptional thickness tolerance.This atomically symmetric breaking VSA strategy provides a promising strategy for extending the L_(D)to achieve thick-film OSCs with prominent performance. 展开更多
关键词 atomically symmetric-breaking volatile solid additive thick-film organic solar cells exciton diffusion length
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Deposition of MgB2 Superconducting Films on Different Metal Substrates
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作者 陈莉萍 李芬 +7 位作者 郭涛 庄承钢 姚丹 丁莉莉 张开成 甘子钊 熊光成 冯庆荣 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第7期2074-2076,共3页
By a method of hybrid physical-chemical vapour deposition (HPCVD) on three metal substrates of stainless steel, copper and niobium, we deposit MgB2 superconducting films over 1 μm thickness. All of them have zero r... By a method of hybrid physical-chemical vapour deposition (HPCVD) on three metal substrates of stainless steel, copper and niobium, we deposit MgB2 superconducting films over 1 μm thickness. All of them have zero resistance temperatures To(O) 〉 36 K and critical current densities Jc (IOK, OT) 〉106 A/cm^2. Meanwhile, in the bending test, all the MgB2 superconducting films adhere strongly to the metal substrates without peeling off. Therefore, the MgB2 superconducting films supplied by the HPCVD method exhibit preferable electrical, magnetic and mechanical properties, and have potential applications in future. 展开更多
关键词 IN-SITU REACTION thick-films COMPOSITE WIRES POWDER CU
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Achieving Efficient Thick Film All-polymer Solar Cells Using a Green Solvent Additive 被引量:6
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作者 Zhen-Ye Li Wen-Kai Zhong +4 位作者 Lei Ying Ning Li Feng Liu Fei Huang Yong Cao 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2020年第4期323-331,I0005,共10页
Adva nces in orga nic photovoltaic tech no logies have been geared toward industrial high-throughput printing manufacturing,which requires in sensitivity of photovoltaic performance reg a rd i ng to the light-harvesti... Adva nces in orga nic photovoltaic tech no logies have been geared toward industrial high-throughput printing manufacturing,which requires in sensitivity of photovoltaic performance reg a rd i ng to the light-harvesting layer thickness.However,the thickness of light-harvesti ng layer for all polymer solar cells(all-PSCs)is often limited to about 100 nm due to the dramatically decreased fill factor upon increasing film thickness,which hampers the light harvesting capability to in crease the power con versio n efficie ncy,and is un favorable for fabricating large-area devices.Here we dem on strate that by tuning the bulk heterojuncti on morphology using a non-halogenated solvent,cyclopentyl methyl ether,in the presence of a gree n solve nt additive of dibenzyl ether,the power con versio n efficie ncy of all-PSCs with photoactive layer thick nesses of over 500 nm reached an impressively high value of 9%.The gen eric applicability of this gree n solvent additive to boost the power conversion efficiency of thick-film devices is also validated in various bulk heterojunction active layer systems,thus representing a promising approach for the fabrication of all-PSCs toward industrial production,as well as further commercialization. 展开更多
关键词 thick-film all-polymer solar cell Gree n solve nt additive Dibenzyl ether
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Blended solvent for tuning vertical phase separation in layer-by-layer processed thick-film organic solar cells
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作者 Wenlong Liu Jieni Chen +6 位作者 Xian Tang Zhengdong Wei Guanghao Lu Wenkai Zhang Xinjun Xu Hao Lu Zhishan Bo 《Science China Chemistry》 2025年第7期3286-3294,共9页
Organic solar cells(OSCs)with a vertically phase-separated active layer are crucial for achieving high power conversion efficiency(PCE).However,obtaining such morphology remains a significant challenge,particularly in... Organic solar cells(OSCs)with a vertically phase-separated active layer are crucial for achieving high power conversion efficiency(PCE).However,obtaining such morphology remains a significant challenge,particularly in thick-film devices.To address this challenge,we develop a blended solvent strategy aimed at regulating the downward penetration of acceptor molecules into the underlying donor layer in layer-by-layer(LBL)solution-processed OSCs.By combining a good solvent with a poor solvent and precisely adjusting the ratio of a fast-volatilizing good solvent(chloroform)to a slow-volatilizing poor solvent(o-xylene),we have finely tuned the spatial distribution of acceptor molecules in the active layer.This has successfully resulted in a vertically phase-separated structure and enhanced crystallinity of the acceptor phase,which is conducive to exciton diffusion,exciton dissociation,and charge transport.We have verified the existence of such morphology through film depthdependent light absorption spectroscopy and time-of-flight secondary ion mass spectrometry analysis.The PCE of D18/BTPe C9-4F-based OSCs prepared using this strategy has shown significant improvement,with the PCE of devices with a 100-nanometer-thick active layer increasing from 18.77%to 19.36%.Notably,when employing this strategy to prepare OSCs with a 300-nanometer-thick active layer,an impressive PCE value of 18.06%was achieved,marking it as the highest-performing thickfilm binary organic solar cell reported thus far. 展开更多
关键词 organic solar cells vertical phase separation thick-film layer-by-layer blended solvent
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High-crystallinity fluoropolymer collaborating fluorous solvent post-treatment for efficient thick-film organic solar cells
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作者 Zhilong He Siyuan Li +3 位作者 Zhe Hao Yi Lin Zheng Tang Hongliang Zhong 《Science China Materials》 2025年第11期4204-4212,共9页
Thick-film organic solar cells(OSCs)are critical for large-scale manufacturing,yet they face persistent challenges of severe energy loss and complex morphology control.The integration of molecular design and device en... Thick-film organic solar cells(OSCs)are critical for large-scale manufacturing,yet they face persistent challenges of severe energy loss and complex morphology control.The integration of molecular design and device engineering is widely recognized as a promising strategy to address these bottlenecks.Here,we report the synthesis of a fluoropolymer PF8 and its application in combination with fluorous solvent vapor annealing(FSVA)post-treatment to fabricate high-performance thick-film OSCs.The fluorination strategy and FSVA process synergistically enhance the polymer’s crystallinity and induce an intrinsic fibrous morphology.As a result,the FSVA-treated PF8:L8BO device with a thickness of 110 nm achieves a power conversion efficiency(PCE)of 18.89%.Notably,even when the film thickness is increased to 300 and 500 nm,the devices maintain high efficiencies of 17.54%and 15.59%,respectively.More importantly,the 300-nm FSVA-treated blend films exhibit enhanced packing order and well-defined fibrillar morphology,leading to suppressed non-radiative recombination and efficient charge transport along the fiber network.This study demonstrates the potential of combining fluoropolymers with fluorous solvent-based device engineering for advanced thick-film optoelectronic applications,providing a viable pathway for scalable OSC manufacturing. 展开更多
关键词 thick-film organic solar cells FLUOROPOLYMER fluorous solvent POST-TREATMENT fibrillar morphology
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Subtle Side Chain Triggers Unexpected Two-Channel Charge Transport Property Enabling 80%Fill Factors and Efficient Thick-Film Organic Photovoltaics 被引量:3
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作者 Yonghai Li Lu Yu +8 位作者 Liangliang Chen Chenyu Han Huanxiang Jiang Zitong Liu Nan Zheng Jiuxing Wang Mingliang Sun Renqiang Yang Xichang Bao 《The Innovation》 2021年第1期173-182,共10页
To clearly show how important the impact of side chains on organic solar cells(OSCs)is,we designed three acceptors IDIC-CxPh(x=4,5,or 6)via subtle side-chain regulation.Despite this small change,significant distinctio... To clearly show how important the impact of side chains on organic solar cells(OSCs)is,we designed three acceptors IDIC-CxPh(x=4,5,or 6)via subtle side-chain regulation.Despite this small change,significant distinctions were detected.IDIC-C4Ph devices achieve an optimal efficiency of 13.94%under thermal annealing,but thermal-assistant solvent-vapor annealing hugely suppresses the efficiencies to 10%.However,the C6Ph side chain endows extremely disordered stacking orientations,generating moderate efficiencies of~12.50%.Excitingly,the IDIC-C5Ph affords an unexpected two-channel p-p charge transport(TCCT)property,boosting the fill factor(FF)by up to 80.02%and efficiency to 14.56%,ranking the best among five-ring fused-ladder-type acceptors.Impressively,the special TCCT behavior of IDIC-C5Ph enables 470 nm thick-film OSC with a high FF of up to 70.12%and efficiency of 13.01%,demonstrating the great promise in fabricating largescale OSCs. 展开更多
关键词 organic solar cells side chain molecular assembly twochannel charge transport thick-film
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A NOVEL CATALYTIC SENSOR FOR MONITORING THE CONCENTRATION OF MIXED COMBUSTIBLE GASES
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作者 罗瑞贤 陈亮环 +1 位作者 陈霭璠 CHUNG-CHIUN LIU 《Science China Mathematics》 SCIE 1991年第12期1500-1507,共8页
This paper studies gas detectors, especially, gas sensors in which a thermochemical reac-tion takes place on a catalytic element. The novel catalytic sensor is fabricated using micro-electronic thick-film techniques, ... This paper studies gas detectors, especially, gas sensors in which a thermochemical reac-tion takes place on a catalytic element. The novel catalytic sensor is fabricated using micro-electronic thick-film techniques, and it is used to monitor the concentration of combustiblegases and their mixture in a flow reactor. This sensor has two identical platinum films whichare used as the heater, resistance thermometer and the surface of reaction. Catalyst of palla-dium is deposited on one of the platinum film by chemical method, while the other platinumfilm serves as a compensating element. The difference in the minimum reaction temperaturefor the catalytic oxidation of the combustible gas components of mixture by palladium sug-gests that it is possible to analyse such a gas mixture. The purpose of the study is to demon-strate that the sensor fabricated by this process has good sensing characteristics for hydrogenor carbon monoxide gas in the mixture of methane and ethane. 展开更多
关键词 CATALYTIC sensor microelectronic thick-film techniques MIXED COMBUSTIBLE gases.
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