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Broadband Telecom Single-Photon Emissions from InAs/InP Quantum Dots Grown by MOVPE Droplet Epitaxy
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作者 Shichen Zhang Li Liu +6 位作者 Kai Guo Xingli Mu Yuanfei Gao Junqi Liu Fengqi Liu Quanyong Lu Zhiliang Yuan 《Chinese Physics Letters》 2026年第1期37-43,共7页
The development of quantum materials for single-photon emission is crucial for the advancement of quantum information technology.Although significant advancements have been witnessed in recent years for single-photon ... The development of quantum materials for single-photon emission is crucial for the advancement of quantum information technology.Although significant advancements have been witnessed in recent years for single-photon sources in the near-infrared band(λ∼700–1000 nm),several challenges have yet to be addressed for ideal single-photon emission at the telecommunication band.In this study,we present a droplet-epitaxy strategy for O-band to C-band single-photon source-based semiconductor quantum dots(QDs)using metal-organic vaporphase epitaxy(MOVPE).By investigating the growth conditions of the epitaxial process,we have successfully synthesized InAs/InP QDs with narrow emission lines spanning a broad spectral range of λ∼1200–1600 nm.The morphological and optical properties of the samples were characterized using atomic force microscopy and microphotoluminescence spectroscopy.The recorded single-photon purity of a plain QD structure reaches g^((2))(0)=0.16,with a radiative recombination lifetime as short as 1.5 ns.This work provides a crucial platform for future research on integrated microcavity enhancement techniques and coupled QDs with other quantum photonics in the telecom bands,offering significant prospects for quantum network applications. 展开更多
关键词 development quantum materials broadband telecom single photon emissions MOVPE droplet epitaxy InAs InP quantum dots microcavity enhancement quantum dots qds using information technologyalthough
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DOT1L敲除的鸡胚成纤维细胞系构建及其对ALV-J复制和细胞信号通路的影响
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作者 余莫涵 王鑫妍 +4 位作者 蔡清清 王佳兴 高琦 常国斌 陈世豪 《中国家禽》 北大核心 2025年第8期1-10,共10页
研究旨在通过CRISPR-Cas9技术构建DOT1L基因敲除的鸡胚成纤维细胞系(DF-1),并分析DOT1L基因敲除对J亚群禽白血病病毒(ALV-J)复制及其细胞信号通路的影响,也为后续进一步研究DOT1L的生物学功能提供生物材料。研究首先利用CRISPR/Cas9基... 研究旨在通过CRISPR-Cas9技术构建DOT1L基因敲除的鸡胚成纤维细胞系(DF-1),并分析DOT1L基因敲除对J亚群禽白血病病毒(ALV-J)复制及其细胞信号通路的影响,也为后续进一步研究DOT1L的生物学功能提供生物材料。研究首先利用CRISPR/Cas9基因编辑技术构建DOT1L基因敲除的DF-1细胞系,分析野生型和敲除细胞对ALV-J复制的影响,再通过转录组测序技术对敲除细胞与野生型细胞的基因表达谱进行了差异分析。结果显示:设计的sgRNA均具有T7E1酶切割活性且sgRNA-1切割活性最高。DNA测序显示,筛选DOT1L敲除的阳性细胞外显子区域分别缺失2个和4个碱基,导致移码突变产生。Western blot验证DOT1L基因敲除的单克隆细胞的H3K79me2水平显著降低(P<0.05),并且DOT1L敲除显著抑制ALV-J复制。RNA-Seq结果显示,与野生细胞系相比DOT1L敲除细胞系的差异表达基因(DEGs)共有2821个,其中上调基因1384个,下调基因1437个。DEGs的GO功能注释主要与细胞成长代谢和生物过程的调节相关;KEGG通路富集分析主要集中在细胞黏附、ECM受体和Wnt途径等信号通路。综上,研究首次成功构建了DOT1L基因敲除的鸡胚成纤维细胞系,并通过转录组测序分析和筛选DOT1L基因敲除细胞系的差异基因表达谱,这有助于理解DOT1L基因在鸡胚成纤维细胞中的潜在作用,还为进一步探究鸡DOT1L的抗病毒天然免疫调控功能提供重要的生物材料。 展开更多
关键词 dot1L基因 鸡胚成纤维细胞系 CRISPR-Cas9 ALV-J 转录组测序
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Efficient Perovskite Quantum Dots Light-emitting Diodes:Challenges and Optimization 被引量:3
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作者 LI Mengjiao WANG Ye +1 位作者 WANG Yakun LIAO Liangsheng 《发光学报》 北大核心 2025年第3期452-461,共10页
Perovskite quantum dot light-emitting diodes(Pe-QLEDs)have shown immense application potential in display and lighting fields due to their narrow full-width at half maximum(FWHM)and high photoluminescence quantum yiel... Perovskite quantum dot light-emitting diodes(Pe-QLEDs)have shown immense application potential in display and lighting fields due to their narrow full-width at half maximum(FWHM)and high photoluminescence quantum yield(PLQY).Despite significant advancements in their performance,challenges such as defects and ion migration still hinder their long-term stability and operational efficiency.To address these issues,various optimization strategies,including ligand engineering,interface passivation,and self-assembly strategy,are being actively researched.This review focuses on the synthesis methods,challenges and optimization of perovskite quantum dots,which are critical for the commercialization and large-scale production of high-performance and stable Pe-QLEDs. 展开更多
关键词 perovskite quantum dot light-emitting diodes(Pe-QLEDs) PHOTOLUMINESCENCE DEFECTS ion migration
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基于Kano-熵权法的轮胎DOT激光雕刻机设计 被引量:1
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作者 苏晨 刘品卓 +1 位作者 王文懿 吴昭仪 《包装工程》 北大核心 2025年第6期127-133,共7页
目的优化现有轮胎DOT雕刻的工艺流程,解决现存轮胎侧壁激光雕刻设备存在控制复杂和成本高的问题,提高轮胎生产效率和控制生产成本的,并满足员工的安全需求。方法采用Kano模型对用户需求进行分析和提取,得出各需求要素的主观权重,结合熵... 目的优化现有轮胎DOT雕刻的工艺流程,解决现存轮胎侧壁激光雕刻设备存在控制复杂和成本高的问题,提高轮胎生产效率和控制生产成本的,并满足员工的安全需求。方法采用Kano模型对用户需求进行分析和提取,得出各需求要素的主观权重,结合熵权法将影响用户需求的主观因素下降到最低,并进行需求要素的客观权重排序。结果依据Kano-熵权法的集成模型,剔除用户需求的主观因素,指导产出了轮胎DOT激光雕刻智能设备设计方案,最终方案操作合理,安全可靠,基本满足了用户需求。结论基于Kano模型与熵权法的产品开发流程有效提高了设计过程中用户需求要素提取的准确性,突出了用户需求与产品功能之间的耦合关系,为轮胎雕刻设备领域的设计提供新的参考。 展开更多
关键词 产品设计 激光雕刻设备 KANO模型 熵权法 轮胎dot
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一种测量纳秒级高电压脉冲的D-dot探测器
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作者 潘子龙 程新兵 +4 位作者 陈绒 陈侠 张瀚文 张仁杰 钱宝良 《强激光与粒子束》 北大核心 2025年第4期127-134,共8页
设计了一种测量纳秒级高电压脉冲的D-dot探测器,包括微分探头和无源积分器的设计、仿真和实验。该探测器的探头电极可以根据不同的测量器件进行更换,探头电极的轴向长度也可以根据测量需求进行调节。采用CST软件对该探头的电场分布开展... 设计了一种测量纳秒级高电压脉冲的D-dot探测器,包括微分探头和无源积分器的设计、仿真和实验。该探测器的探头电极可以根据不同的测量器件进行更换,探头电极的轴向长度也可以根据测量需求进行调节。采用CST软件对该探头的电场分布开展了静电场模拟分析,并进行了结构优化,同时利用OrCAD/Pspice软件对D-dot探头、积分器和探测器的幅频响应特性进行了分析,确保探测器的工作频率满足设计要求。利用设计的D-dot探测器开展了纳秒级高电压脉冲测量实验,实验结果表明,设计的D-dot探测器满足前沿时间约37 ns、电压幅值约597 kV的高电压脉冲测量需求。 展开更多
关键词 D-dot探测器 纳秒级 高电压脉冲 可调节探头 幅频特性
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DOT-300催化剂在C_(8)^(+)混合芳烃脱烯烃工艺中的应用及效果
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作者 刘福泉 张勇 +4 位作者 祁磊 苏健 焦晓东 李宗昌 王锋 《石油炼制与化工》 北大核心 2025年第6期58-64,共7页
催化重整生成油脱烯烃是保证二甲苯装置进料溴指数符合设计要求的必要操作,而传统白土和改性白土(以下统称白土)脱烯烃存在使用寿命短、换剂频繁、废剂处理污染环境等问题,必须寻找使用寿命长且脱烯烃效果好的替代方案。通过分析和比较... 催化重整生成油脱烯烃是保证二甲苯装置进料溴指数符合设计要求的必要操作,而传统白土和改性白土(以下统称白土)脱烯烃存在使用寿命短、换剂频繁、废剂处理污染环境等问题,必须寻找使用寿命长且脱烯烃效果好的替代方案。通过分析和比较主流催化重整生成油液相加氢技术和分子筛催化剂脱烯烃技术的应用和现状,从装置投资和装置应用两个方面考虑,选取分子筛催化剂DOT-300作为替代白土的方案,并对方案应用前后的进料和产品溴指数进行比对分析,验证了分子筛催化剂脱烯烃技术的应用效果,该方案的应用能够保证二甲苯产品溴指数合格的同时保证装置运行稳定,有利于装置长周期运行。 展开更多
关键词 C_(8)^(+) 混合芳烃 脱烯烃 分子筛催化剂 dot-300 溴指数 二甲苯
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基于相似换算N-dot的涡扇发动机全包线加速控制计划研究
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作者 王心怡 郑前钢 张海波 《航空动力学报》 北大核心 2025年第9期482-493,共12页
针对转子加速度(N-dot)加速控制计划存在全包线范围内适用性不足的问题,提出了一种基于相似换算N-dot的全包线加速控制方法。推导并验证了在等风扇进口总温线上涡扇发动机风扇转速、压气机转速、涡轮前温度等参数稳态相似换算误差小;研... 针对转子加速度(N-dot)加速控制计划存在全包线范围内适用性不足的问题,提出了一种基于相似换算N-dot的全包线加速控制方法。推导并验证了在等风扇进口总温线上涡扇发动机风扇转速、压气机转速、涡轮前温度等参数稳态相似换算误差小;研究了N-dot可以直接反映剩余功率的大小,保证动态过程相似换算精度高;选择覆盖发动机全工作包线的有限个等温线工作点,构建了不同总温下换算的N-dot加速控制计划;通过相邻等温线线性插值将加速控制计划拓展至非等温线上工作点,实现N-dot加速控制方法全包线内适用。仿真结果表明:相比于传统开环油气比加速控制计划,在同一等温线不同工作点的加速过程,所提方法的加速时间分别缩短了5.31%和10.32%,在非等温线工作点的加速过程,加速时间缩短了57.74%,且全工作包线点的加速时间在2.3~12.3 s内,加速过程均不会出现参数超限问题。所提方法在发动机全包线内的加速控制均能满足快速性和安全性的需求。 展开更多
关键词 N-dot加速控制计划 相似换算 涡扇发动机 全包线 等温线
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Rational construction of S-scheme CdS quantum dots/In_(2)O_(3) hollow nanotubes heterojunction for enhanced photocatalytic H_(2)evolution 被引量:2
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作者 Yong-Hui Wu Yu-Qing Yan +3 位作者 Yi-Xiang Deng Wei-Ya Huang Kai Yang Kang-Qiang Lu 《Chinese Journal of Catalysis》 2025年第3期333-340,共8页
The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS... The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS QDs and hollow nanotube In_(2)O_(3)is successfully achieved using an electrostatic self-assembly method.Under visible light irradiation,all CdS-In_(2)O_(3)composites exhibit higher hydrogen evolution efficiency compared to pure CdS QDs.Notably,the photocatalytic H_(2)evolution rate of the optimal CdS-7%In_(2)O_(3)composite is determined to be 2258.59μmol g^(−1)h^(−1),approximately 12.3 times higher than that of pure CdS.The cyclic test indicates that the CdS-In_(2)O_(3)composite maintains considerable activity even after 5 cycles,indicating its excellent stability.In situ X-ray photoelectron spectroscopy and density functional theory calculations confirm that carrier migration in CdS-In_(2)O_(3)composites adheres to a typical S-scheme heterojunction mechanism.Additionally,a series of characterizations demonstrate that the formation of S-scheme heterojunctions between In_(2)O_(3)and CdS inhibits charge recombination and accelerates the separation and migration of photogenerated carriers in the CdS QDs,thus achieving enhanced photocatalytic performance.This work elucidates the pivotal role of S-scheme heterojunctions in photocatalytic H_(2)production and offers novel insights into the construction of effective composite photocatalysts. 展开更多
关键词 CdS In2O3 Quantum dot Photocatalytic H_(2)evolution S-scheme heterojunction
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Construction of eco-friendly dual carbon dots ratiometric fluorescence probe for highly selective and efficient sensing mercury ion 被引量:1
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作者 Yongli Liu Xiaoyan Su +5 位作者 Huanjia Liu Guifen Zhu Guobei Ge Yuxin Wang Penghui Zhou Qingxiang Zhou 《Journal of Environmental Sciences》 2025年第2期1-12,共12页
In present work,blue carbon dots(b-CDs)were derived from ammonium citrate and guanidine hydrochloride,and red carbon dots(r-CDs)were stemmed from malonate,ethylenediamine and meso-tetra(4-carboxyphenyl)porphin based o... In present work,blue carbon dots(b-CDs)were derived from ammonium citrate and guanidine hydrochloride,and red carbon dots(r-CDs)were stemmed from malonate,ethylenediamine and meso-tetra(4-carboxyphenyl)porphin based on facile hydrothermal method.Eco-friendly ratiometric fluorescence probe was innovatively constructed to effectively measure Hg2+utilizing b-CDs and r-CDs.The developed probe displayed two typical emission peaks at 450 nm from b-CDs and 650 nm from r-CDs under the excitation at 360 nm.Mercury ion has strong quenching effect on the fluorescence intensity at 450 nm due to the electron transfer process and the fluorescence change at 450 nm was used as the response signal,whereas the fluorescence intensity at 650 nm kept unchangeable which resulted from the chemical inertness between Hg^(2+)and r-CDs,serving as the reference signal in the sensing system.Under optimal circumstances,this probe exhibited an excellent linearity between the fluorescence response values of F450/F650 and Hg^(2+)concentrations over range of 0.01-10μmol/L,and the limit of detectionwas down to 5.3 nmol/L.Furthermore,this probe was successfully employed for sensing Hg^(2+)in practical environmental water samples with satisfied recoveries of 98.5%-105.0%.The constructed ratiometric fluorescent probe provided a rapid,environmental-friendly,reliable,and efficient platform for measuring trace Hg^(2+)in environmental field. 展开更多
关键词 Blue carbon dots Red carbon dots Electron transfer Hg^(2+) ECO-FRIENDLINESS
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Silica coating of quantum dots and their applications in optoelectronic fields 被引量:1
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作者 Siting Cai Xiang Chen +3 位作者 Shuli Wang Xinqin Liao Zhong Chen Yue Lin 《Chinese Chemical Letters》 2025年第6期96-107,共12页
Quantum dots(QDs),a type of nanoscale semiconductor material with unique optical and electrical properties like adjustable emission and high photoluminescence quantum yields,are suitable for applications in optoelectr... Quantum dots(QDs),a type of nanoscale semiconductor material with unique optical and electrical properties like adjustable emission and high photoluminescence quantum yields,are suitable for applications in optoelectronics.However,QDs are typically degraded under humid and high-temperature circumstances,greatly limiting their practical value.Coating the QD surface with an inorganic silica layer is a feasible method for improving stability and endurance in a variety of applications.This paper comprehensively reviews silica coating methodologies on QD surfaces and explores their applications in optoelectronic domains.Firstly,the paper provides mainstream silica coating approaches,which can be divided into two categories:in-situ hydrolysis of silylating reagents on QD surfaces and template techniques for encapsulation QDs.Subsequently,the recent applications of the silica-coated QDs on optoelectronic fields including light-emitting diodes,solar cells,photodetectors were discussed.Finally,it reviews recent advances in silica-coated QD technology and prospects for future applications. 展开更多
关键词 Silica-coating Quantum dots Light-emitting diodes Solar cells PHOTODETECTOR
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A review of carbon dots in synthesis strategies,photoluminescence mechanisms,and applications in wastewater treatment 被引量:1
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作者 Ping Wang Chunmao Chen +1 位作者 Hongwei Ren Erhong Duan 《Chinese Chemical Letters》 2025年第9期140-170,共31页
Urbanization and industrialization have escalated water pollution,threatening ecosystems and human health.Water pollution not only degrades water quality but also poses long-term risks to human health through the food... Urbanization and industrialization have escalated water pollution,threatening ecosystems and human health.Water pollution not only degrades water quality but also poses long-term risks to human health through the food chain.The development of efficient wastewater detection and treatment methods is essential for mitigating this environmental hazard.Carbon dots(CDs),as emerging carbon-based nanomaterials,exhibit properties such as biocompatibility,photoluminescence(PL),water solubility,and strong adsorption,positioning them as promising candidates for environmental monitoring and management.Particularly in wastewater treatment,their optical and electron transfer properties make them ideal for pollutant detection and removal.Despite their potential,comprehensive reviews on CDs'role in wastewater treatment are scarce,often lacking detailed insights into their synthesis,PL mechanisms,and practical applications.This review systematically addresses the synthesis,PL mechanisms,and wastewater treatment applications of CDs,aiming to bridge existing research gaps.It begins with an overview of CDs structure and classification,essential for grasping their properties and uses.The paper then explores the pivotal PL mechanisms of CDs,crucial for their sensing capabilities.Next,comprehensive synthesis strategies are presented,encompassing both top-down and bottom-up strategies such as arc discharge,chemical oxidation,and hydrothermal/solvothermal synthesis.The diversity of these methods highlights the potential for tailored CDs production to suit specific environmental applications.Furthermore,the review systematically discusses the applications of CDs in wastewater treatment,including sensing,inorganic removal,and organic degradation.Finally,it delves into the research prospects and challenges of CDs,proposing future directions to enhance their role in wastewater treatment. 展开更多
关键词 Carbon dots Classification Synthesis strategies PL mechanism Sensing ADSORPTION PHOTOCATALYSIS
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Recent advances of photolithography patterning of quantum dots for micro-display applications 被引量:1
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作者 Xuemin Kong Xiaotong Fan +6 位作者 Yuhui Wang Yunshu Luo Yihang Chen Tingzhu Wu Zhong Chen Yue Lin Shuli Wang 《Nano Materials Science》 2025年第1期49-64,共16页
The preparation of red,green,and blue quantum dot(QD)pixelated arrays with high precision,resolution,and brightness poses a significant challenge on the development of advanced micro-displays for virtual,augmented,and... The preparation of red,green,and blue quantum dot(QD)pixelated arrays with high precision,resolution,and brightness poses a significant challenge on the development of advanced micro-displays for virtual,augmented,and mixed reality applications.Alongside the controlled synthesis of high-performance QDs,a reliable QD patterning technology is crucial in overcoming this challenge.Among the various methods available,photolithography-based patterning technologies show great potentials in producing ultra-fine QD patterns at micron scale.This review article presents the recent advancements in the field of QD patterning using photolithography techniques and explores their applications in micro-display technology.Firstly,we discuss QD patterning through photolithography techniques employing photoresist(PR),which falls into two categories:PRassisted photolithography and photolithography of QDPR.Subsequently,direct photolithography techniques based on photo-induced crosslinking of photosensitive groups and photo-induced ligand cleavage mechanisms are thoroughly reviewed.Meanwhile,we assess the performance of QD arrays fabricated using these photolithography techniques and their integration into QD light emitting diode display devices as well as color conversionbased micro light emitting diode display devices.Lastly,we summarize the most recent developments in this field and outline future prospects. 展开更多
关键词 Quantum dot PHOTOLITHOGRAPHY Patterning technology Micro-display
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Carbon-based quantum dots/nanodots materials for potassium ion storage 被引量:1
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作者 Zhanheng Yan Weiqing Su +6 位作者 Weiwei Xu Qianhui Mao Lisha Xue Huanxin Li Wuhua Liu Xiu Li Qiuhui Zhang 《Chinese Chemical Letters》 2025年第4期83-95,共13页
With the rapid development of electric vehicles,hybrid electric vehicles and smart grids,people's demand for large-scale energy storage devices is increasingly intense.As a new type of secondary battery,potassium ... With the rapid development of electric vehicles,hybrid electric vehicles and smart grids,people's demand for large-scale energy storage devices is increasingly intense.As a new type of secondary battery,potassium ion battery is promising to replace the lithium-ion battery in the field of large-scale energy storage by virtue of its low price and environmental friendliness.At present,the research on the anode materials of potassium ion batteries mainly focuses on carbon materials and the design of various nanostructured metal-based materials.Problems such as poor rate performance and inferior cycle life caused by electrode structure comminution during charge and discharge have not been solved.Quantum dots/nanodots materials are a new type of nanomaterials that can effectively improve the utilization of electrode materials and reduce production costs.In addition,quantum dots/nanodots materials can enhance the electrode reaction kinetics,reduce the stress generated in cycling,and effectively alleviate the agglomeration and crushing of electrode materials.In this review,we will systematically introduce the synthesis methods,K+storage properties and K+storage mechanisms of carbon quantum dots and carbon-based transition metal compound quantum dots composites.This review will have significant references for potassium ion battery researchers. 展开更多
关键词 Quantum dots NANOdotS Potassium ion battery ANODE Composite material
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Charge carrier management via semiconducting matrix for efficient self-powered quantum dot infrared photodetectors 被引量:1
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作者 Jianfeng Ding Xinying Liu +3 位作者 Yueyue Gao Chen Dong Gentian Yue Furui Tan 《Journal of Semiconductors》 2025年第3期74-81,共8页
Quantum dot(QD)-based infrared photodetector is a promising technology that can implement current monitoring,imaging and optical communication in the infrared region. However, the photodetection performance of self-po... Quantum dot(QD)-based infrared photodetector is a promising technology that can implement current monitoring,imaging and optical communication in the infrared region. However, the photodetection performance of self-powered QD devices is still limited by their unfavorable charge carrier dynamics due to their intrinsically discrete charge carrier transport process. Herein, we strategically constructed semiconducting matrix in QD film to achieve efficient charge transfer and extraction.The p-type semiconducting CuSCN was selected as energy-aligned matrix to match the n-type colloidal PbS QDs that was used as proof-of-concept. Note that the PbS QD/CuSCN matrix not only enables efficient charge carrier separation and transfer at nano-interfaces but also provides continuous charge carrier transport pathways that are different from the hoping process in neat QD film, resulting in improved charge mobility and derived collection efficiency. As a result, the target structure delivers high specific detectivity of 4.38 × 10^(12)Jones and responsivity of 782 mA/W at 808 nm, which is superior than that of the PbS QD-only photodetector(4.66 × 10^(11)Jones and 338 mA/W). This work provides a new structure candidate for efficient colloidal QD based optoelectronic devices. 展开更多
关键词 quantum dot semiconducting matrix ligand exchange self-powered photodetectors
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High-performance zinc-ion hydrogel electrolytes based on molecular-level hybridization of PVA with polymer quantum dots 被引量:1
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作者 Jingyu Du Xiao Zhan +3 位作者 Yuhuan Xu Kunlan Diao Daohai Zhang Shuhao Qin 《Journal of Materials Science & Technology》 2025年第9期251-258,共8页
Aqueous zinc ion batteries have received widespread attention.However,the growth of zinc dendrites and hydrogen evolution reaction generation seriously hinder the practical application of zinc ion bat-teries.Herein,it... Aqueous zinc ion batteries have received widespread attention.However,the growth of zinc dendrites and hydrogen evolution reaction generation seriously hinder the practical application of zinc ion bat-teries.Herein,it is reported that a multifunctional dendrites-free low-temperature PVA-based gel elec-trolyte by introducing negatively charged polymer carbon quantum dots(QDs)and the organic antifreeze dimethyl sulfoxide(DMSO)into it.The QDs carrying a large number of functional groups on the surface can effectively adsorb Zn^(2+),eliminating the“tip effect”,and inducing the uniform deposition of Zn^(2+)and the formation of a dendrites-free structure.Meanwhile,the solvation structure of adsorbed Zn^(2+)can be controlled by charged groups to reduce the generation of side reactions,thus obtaining high-performance zinc ion batteries.The Zn/polyaniline(PANi)full battery can be stably cycled more than 1000 times at-20℃,and the design of this gel electrolyte can provide good feasibility for safe,stable,and flexible energy storage devices. 展开更多
关键词 Solid-state zinc-ion batteries PVA-based hydrogel Dendrite-free Quantum dots
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Sulfur-Doped Carbonized Polymer Dots:A Biocompatible Photocatalyst for Rapid Aqueous PET-RAFT Polymerization 被引量:1
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作者 Yue Yu Songyuan Tao +3 位作者 Qingsen Zeng Zhihui Ma Kai Zhang Bai Yang 《Carbon Energy》 2025年第3期186-195,共10页
To achieve the target of carbon neutrality,it is crucial to develop an efficient and green synthesis methodology with good atomic economy to achieve sufficient utilization of energy and sustainable development.Photoin... To achieve the target of carbon neutrality,it is crucial to develop an efficient and green synthesis methodology with good atomic economy to achieve sufficient utilization of energy and sustainable development.Photoinduced electron transfer reversible addition-fragmentation chain-transfer(PET-RAFT)polymerization is a precise methodology for constructing polymers with well-defined structures.However,conventional semiconductor-mediated PET-RAFT polymerization still has considerable limitations in terms of efficiency as well as the polymerization environment.Herein,sulfur-doped carbonized polymer dots(CPDs)were hydrothermally synthesized for catalysis of aqueous PET-RAFT polymerization at unprecedented efficiency with a highest propagation rate of 5.05 h-1.The resulting polymers have well-controlled molecular weight and narrow molecular weight dispersion(Ð<1.10).Based on the optoelectronic characterizations,we obtained insights into the photoinduced electron transfer process and proposed the mechanism for CPD-mediated PET-RAFT polymerization.In addition,as-synthesized CPDs for PET-RAFT polymerization were also demonstrated to be suitable for a wide range of light sources(blue/green/solar irradiation),numerous monomers,low catalyst loading(low as 0.01 mg mL^(-1)),and multiple polar solvent environments,all of which allowed to achieve efficiencies much higher than those of existing semiconductor-mediated methods.Finally,the CPDs were confirmed to be non-cytotoxic and catalyzed PET-RAFT polymerization successfully in cell culture media,indicating broad prospects in biomedical fields. 展开更多
关键词 aqueous PET-RAFT polymerization carbonized polymer dots photocatalysis ultrahigh efficiency
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点扩散技术(DOT)眼镜的近视防控效果浅析
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作者 杨羿 《中国眼镜科技杂志》 2025年第12期79-83,共5页
在近视防控的临床实践与研究中,一种基于点扩散技术(Diffusion Optics Technology,简称:DOT)的光学矫正产品逐渐进入公众视野,并被家长们推崇为近视防控领域的“重大突破”。那么,点扩散技术的设计原理是什么?实际防控效果如何?本文旨... 在近视防控的临床实践与研究中,一种基于点扩散技术(Diffusion Optics Technology,简称:DOT)的光学矫正产品逐渐进入公众视野,并被家长们推崇为近视防控领域的“重大突破”。那么,点扩散技术的设计原理是什么?实际防控效果如何?本文旨在从科学原理与临床数据出发,对该技术进行系统梳理与客观评析。 展开更多
关键词 近视防控 临床实践 光学矫正 点扩散技术 dot
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Synthesis of p-type PbS quantum dot ink via inorganic ligand exchange in solution for high-efficiency and stable solar cells 被引量:1
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作者 Napasuda Wichaiyo Yuyao Wei +9 位作者 Chao Ding Guozheng Shi Witoon Yindeesuk Liang Wang Huān Bì Jiaqi Liu Shuzi Hayase Yusheng Li Yongge Yang Qing Shen 《Journal of Semiconductors》 2025年第4期63-70,共8页
Traditional p-type colloidal quantum dot(CQD)hole transport layers(HTLs)used in CQD solar cells(CQDSCs)are commonly based on organic ligands exchange and the layer-by-layer(LbL)technique.Nonetheless,the ligand detachm... Traditional p-type colloidal quantum dot(CQD)hole transport layers(HTLs)used in CQD solar cells(CQDSCs)are commonly based on organic ligands exchange and the layer-by-layer(LbL)technique.Nonetheless,the ligand detachment and complex fabrication process introduce surface defects,compromising device stability and efficiency.In this work,we propose a solution-phase ligand exchange(SPLE)method utilizing inorganic ligands to develop stable p-type lead sulfide(PbS)CQD inks for the first time.Various amounts of tin(Ⅱ)iodide(SnI_(2))were mixed with lead halide(PbX_(2);X=I,Br)in the ligand solution.By precisely controlling the SnI_(2)concentration,we regulate the transition of PbS QDs from n-type to p-type.PbS CQDSCs were fabricated using two different HTL approaches:one with 1,2-ethanedithiol(EDT)-passivated QDs via the LbL method(control)and another with inorganic ligand-passivated QD ink(target).The target devices achieved a higher power conversion efficiency(PCE)of 10.93%,compared to 9.83%for the control devices.This improvement is attributed to reduced interfacial defects and enhanced carrier mobility.The proposed technique offers an efficient pathway for producing stable p-type PbS CQD inks using inorganic ligands,paving the way for high-performance and flexible CQD-based optoelectronic devices. 展开更多
关键词 quantum dot solar cells hole transport layer PBS p-type ink inorganic ligands
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High volumetric-energy-density flexible supercapacitors based on PEDOT:PSS incorporated with carbon quantum dots hybrid electrodes 被引量:1
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作者 Dinh Cung Tien Nguyen Seonghan Kim +2 位作者 Bo-Seok Kim Sejung Kim Soo-Hyoung Lee 《Journal of Materials Science & Technology》 2025年第20期1-10,共10页
Poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)(PEDOT:PSS)is a highly successful conductive polymer utilized as an electrode material in energy storage units for portable and wearable electronic de-vices.Neve... Poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)(PEDOT:PSS)is a highly successful conductive polymer utilized as an electrode material in energy storage units for portable and wearable electronic de-vices.Nevertheless,employing PEDOT:PSS in supercapacitors(SC)in its pristine state presents challenges due to its suboptimal electrochemical performance and operational instability.To surmount these limita-tions,PEDOT:PSS has been integrated with carbon-based materials to form flexible electrodes,which ex-hibit physical and chemical stability during SC operation.We developed a streamlined fabrication process for high-performance SC electrodes composed of PEDOT:PSS and carbon quantum dots(CQDs).The CQDs were synthesized under microwave irradiation,yielding green-and red-light emissions.Through optimiz-ing the ratios of CQDs to PEDOT:PSS,the SC electrodes were prepared using a spray-coating technique,marking a significant improvement in device performance with a high volumetric capacitance(104.10 F cm-3),impressive energy density(19.68 Wh cm^(-3)),and excellent cyclic stability,retaining~85% of its original volumetric capacitance after 15,000 repeated GCD cycles.Moreover,the SCs,when utilized as a flexible substrate,demonstrated the ability to maintain up to~85% of their electrochemical performance even after 3,000 bending cycles(at a bending angle of 60°).These attributes render this hybrid composite an ideal candidate for a lightweight smart energy storage component in portable and wearable electronic technologies. 展开更多
关键词 PEdot:PSS Carbon quantum dots Hybrid electrode SUPERCAPACITOR Flexible power sources
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Size matters:quantum confinement-driven dynamics in CsPbI_(3)quantum dot light-emitting diodes 被引量:1
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作者 Shuo Li Wenxu Yin +1 位作者 Weitao Zheng Xiaoyu Zhang 《Journal of Semiconductors》 2025年第4期55-61,共7页
The quantum confinement effect fundamentally alters the optical and electronic properties of quantum dots(QDs),making them versatile building blocks for next-generation light-emitting diodes(LEDs).This study investiga... The quantum confinement effect fundamentally alters the optical and electronic properties of quantum dots(QDs),making them versatile building blocks for next-generation light-emitting diodes(LEDs).This study investigates how quantum confinement governs the charge transport,exciton dynamics,and emission efficiency in QD-LEDs,using CsPbI_(3) QDs as a model system.By systematically varying QD sizes,we reveal size-dependent trade-offs in LED performance,such as enhanced efficiency for smaller QDs but increased brightness and stability for larger QDs under high current densities.Our findings offer critical insights into the design of high-performance QD-LEDs,paving the way for scalable and energy-efficient optoelectronic devices. 展开更多
关键词 quantum confinement effect CsPbI_(3) quantum dot light-emitting diode
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