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Enhancing the stability of planar perovskite solar cells by green and inexpensive cellulose acetate butyrate
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作者 Bo Xiao Yongxin Qian +5 位作者 Xin Li Yang Tao Zijun Yi Qinghui Jiang Yubo Luo Junyou Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第1期259-265,I0007,共8页
Although the efficiency of organic–inorganic hybrid halide perovskite solar cells has been improved rapidly, the intrinsic instability of perovskite materials restricts their commercial application. Here, an eco-frie... Although the efficiency of organic–inorganic hybrid halide perovskite solar cells has been improved rapidly, the intrinsic instability of perovskite materials restricts their commercial application. Here, an eco-friendly and low-cost organic polymer, cellulose acetate butyrate(CAB), was introduced to the grain boundaries and surfaces of perovskite, resulting in a high-quality and low-defect perovskite film with a nearly tenfold improvement in carrier lifetime. More importantly, the CAB-treated perovskite films have a well-matched energy level with the charge transport layers, thus suppressing carrier nonradiative recombination and carrier accumulation. As a result, the optimized CAB-based device achieved a champion efficiency of 21.5% compared to the control device(18.2%). Since the ester group in CAB bonds with Pb in perovskite, and the H and O in the hydroxyl group bond with the I and organic cations in perovskite,respectively, it will contribute to superior stability under heat, high humidity, and light soaking conditions. After aging under 35% humidity(relative humidity, RH) for 3300 h, the optimized device can still maintain more than 90% of the initial efficiency;it can also retain more than 90% of the initial efficiency after aging at 65 ℃, 65% RH, or light(AM 1.5G) for 500 h. This simple optimization strategy for perovskite stability could facilitate the commercial application of perovskite solar cells. 展开更多
关键词 Planar perovskite solar cells Long-term stability Organic polymer Well-matched energy level Charge transportation and extraction
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Application of an amphipathic molecule at the NiO_(x)/perovskite interface for improving the efficiency and long-term stability of the inverted perovskite solar cells
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作者 Guibin Shen Hongye Dong +4 位作者 Fan Yang Xin Ren Ng Xin Li Fen Lin Cheng Mu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第3期454-462,I0013,共10页
The presence of defects and detrimental reactions at NiO_(x)/perovskite interface extremely limit the efficiency performance and long-term stability of the perovskite solar cells(PSCs) based on NiO_(x).Herein,an amphi... The presence of defects and detrimental reactions at NiO_(x)/perovskite interface extremely limit the efficiency performance and long-term stability of the perovskite solar cells(PSCs) based on NiO_(x).Herein,an amphipathic molecule Triton X100(Triton) is modified on the NiO_(x)surface.The hydrophilic chain of Triton as a Lewis base additive can coordinate with the Ni3+on the NiO_(x)surface which can passivate the interfacial defects and hinder the detrimental reactions at the NiO_(x)/perovskite interface.Additionally,the hydrophobic chain of Triton protrudes from the NiO_(x)surface to prevent moisture from penetrating into the NiO_(x)/perovskite interface.Consequently,the NiO_(x)/Triton-based devices(MAPbI3as absorbing layer) show superior moisture and thermal stability,retaining 88.4% and 64.3% of the initial power conversion efficiency after storage in air(40%-50% relative humidity(RH)) at 25 ℃ for 1070 h and in N2at 85℃ for 800 h,respectively.Moreover,the efficiency increases from 17.59% to 19.89% because of the passivation defect and enhanced hole-extraction capability.Besides,the NiO_(x)/Triton-based PSCs with Cs_(0.05)(MA_(0.15)FA_(0.85))_(0.95)Pb(I_(0.85)Br_(0.15))3perovskite as the light-absorbing layer also exhibits better moisture and thermal stability compared to the control devices,indicating the viability of our strategies.Of particular note,a champion PCE of 22.35% and 20.46% was achieved for small-area(0.1 cm^(2)) and large-area(1.2 cm^(2)) NiO_(x)/Triton-based devices,respectively. 展开更多
关键词 Perovskite solar cells NiO_(x) Defect passivation Long-term stability Amphipathic molecule
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Detailed Micro Raman Spectroscopy Analysis of Doped Silicon Thin Film Layers and Its Feasibility for Heterojunction Silicon Wafer Solar Cells
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作者 Z. P. Ling J. Ge +2 位作者 R. Stangl A. G. Aberle T. Mueller 《Journal of Materials Science and Chemical Engineering》 2013年第5期1-14,共14页
Hydrogenated doped silicon thin films deposited using RF (13.56 MHz) PECVD were studied in detail using micro Raman spectroscopy to investigate the impact of doping gas flow, film thickness, and substrate type on the ... Hydrogenated doped silicon thin films deposited using RF (13.56 MHz) PECVD were studied in detail using micro Raman spectroscopy to investigate the impact of doping gas flow, film thickness, and substrate type on the film characteristics. In particular, by deconvoluting the micro Raman spectra into amorphous and crystalline components, qualitative and quantitative information such as bond angle disorder, bond length, film stress, and film crystallinity can be determined. By selecting the optimum doped silicon thin film deposition conditions, and combining our p-doped and n-doped silicon thin films in different heterojunction structures, we demonstrate both (i) an efficient field effect passivation and (ii) further improvement to c-Si/a-Si:H(i) interface defect density with observed improvement in implied open-circuit voltage VOC and minority carrier lifetimes across all injections levels of interest. In particular, the heterojunction structure (a-Si:H(p)/a-Si:H(i)/c-Si(n)/a-Si:H(i)/a-Si:H(p)) demonstrates a minority carrier lifetime of 2.4 ms at an injection level of 1015 cm-3, and a high implied open-circuit voltage of 725 mV. Simulation studies reveal a strong dependence of the interface defect density Dit on the heterojunction silicon wafer solar cell performance, affected by the deposition conditions of the overlying doped silicon thin film layers. Using our films, and a fitted Dit of 5 × 1010 cm-2·eV-1, we demonstrate that a solar cell efficiency of ~22.5% can be potentially achievable. 展开更多
关键词 Raman Spectroscopy HETEROJUNCTION SILICON WAFER Solar Cells Doped SILICON Simulation PASSIVATION
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Progress of the key materials for organic solar cells 被引量:15
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作者 Yang Tong Zuo Xiao +24 位作者 Xiaoyan Du Chuantian Zuo Yuelong Li Menglan Lv Yongbo Yuan Chenyi Yi Feng Hao Yong Hua Ting Lei Qianqian Lin Kuan Sun Dewei Zhao Chunhui Duan Xiangfeng Shao Wei Li Hin-Lap Yip Zhengguo Xiaol Bin Zhang Qingzhen Bian Yuanhang Cheng Shengjian Liu Ming Cheng Zhiwen Jin Shangfeng Yang Liming Ding 《Science China Chemistry》 SCIE EI CAS CSCD 2020年第6期758-765,共8页
Organic solar cells have attracted academic and industrial interests due to the advantages like lightweight,flexibility and roll-to-roll fabrication.Nowadays,18%power conversion efficiency has been achieved in the sta... Organic solar cells have attracted academic and industrial interests due to the advantages like lightweight,flexibility and roll-to-roll fabrication.Nowadays,18%power conversion efficiency has been achieved in the state-of-the-art organic solar cells.The recent rapid progress in organic solar cells relies on the continuously emerging new materials and device fabrication technologies,and the deep understanding on film morphology,molecular packing and device physics.Donor and acceptor materials are the key materials for organic solar cells since they determine the device performance.The past 25 years have witnessed an odyssey in developing high-performance donors and acceptors.In this review,we focus on those star materials and milestone work,and introduce the molecular structure evolution of key materials.These key materials include homopolymer donors,D-A copolymer donors,A-D-A small molecular donors,fullerene acceptors and nonfullerene acceptors.At last,we outlook the challenges and very important directions in key materials development. 展开更多
关键词 organic solar cells key materials D-A copolymer donors fullerene acceptors nonfullerene acceptors
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Architectural quality of the productive facades integrating photovoltaic and vertical farming systems: Survey among experts in Singapore 被引量:1
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作者 Abel Tablada Vesna Kosoric +2 位作者 Huajing Huang Stephen S.Y.Lau Veronika Shabunko 《Frontiers of Architectural Research》 CSCD 2020年第2期301-318,共18页
Buildings could play a critical role in energy and food production while making highdensity cities more resilient.Productive facades(PFs),as flexible and multi-functional systems integrating photovoltaic(PV)and vertic... Buildings could play a critical role in energy and food production while making highdensity cities more resilient.Productive facades(PFs),as flexible and multi-functional systems integrating photovoltaic(PV)and vertical farming(VF)systems,could contribute to transforming buildings and communities from consumers to producers.This study analyses the architectural quality of the developed PF concept drawing on the findings of a web-survey conducted among experts e building professionals in Singapore.The developed design variants are compared with regards to key design aspects such as facade aesthetics,view from the inside,materialisation,ease of operation,functionality and overall architectural quality.The study also compares and discusses the results of the web-survey with the results of a previously conducted door-to-door survey among the potential users-residents of the Housing&Development Board(HDB)blocks.The findings confirm an overall acceptance of the PF concept and reveal a need for synergetic collaboration between architects/designers and other building professionals.Based on the defined PF design framework and the results of the two surveys,a series of recommendations and improved PF prototypes are proposed for further assessment and implementation in order to foster their scalability from buildings into communities and cities. 展开更多
关键词 Facade systems Building integrated photovoltaic(BIPV) Solar shading devices Vertical farming(VF) Sustainable buildings SURVEY
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Structural modulation and assembling of metal halide perovskites for solar cells and light-emitting diodes
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作者 Xixia Liu Zhaofu Zhang +1 位作者 Fen Lin Yuanhang Cheng 《InfoMat》 SCIE CAS 2021年第11期1218-1250,共33页
Metal halide perovskites possess appealing optoelectronic properties and have been widely applied for solar energy harvesting and light emitting.Although perovskite solar cells(PeSCs)and perovskite light-emitting diod... Metal halide perovskites possess appealing optoelectronic properties and have been widely applied for solar energy harvesting and light emitting.Although perovskite solar cells(PeSCs)and perovskite light-emitting diodes(PeLEDs)have been developed rapidly in recent years,there are still no universal rules for the selection of perovskites to achieve high-performance optoelectronic devices.In this review,the working mechanisms of PeSCs and PeLEDs are first demonstrated with the discussion on the factors which determine the device performance.We then examine the optoelectronic properties of perovskites with structures modulated from 3D,2D,1D to 0D,and analyze the corresponding structure-property relationships in terms of photo-electric and electric-photo conversion processes.Based on the unique optoelectronic properties of structurally modulated perovskites,we put forward the concept of structural assembling engineering that integrate the merits of different types of perovskites within one matrix and elaborate their excellent properties for applications of both PeSCs and PeLEDs.Finally,we discuss the potential challenges and provide our perspectives on the structural assembling engineering of perovskites for future optoelectronic applications. 展开更多
关键词 light-emitting diodes low-dimensional perovskites metal halide perovskites solar cells structural assembling structure modulation
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Perovskite/Si tandem solar cells: Fundamentals, advances,challenges, and novel applications
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作者 Yuanhang Cheng Liming Ding 《SusMat》 2021年第3期324-344,共21页
The world record device efficiency of single-junction solar cells based on organic–inorganic hybrid perovskites has reached 25.5%.Further improvement in device power conversion efficiency(PCE)can be achieved by eithe... The world record device efficiency of single-junction solar cells based on organic–inorganic hybrid perovskites has reached 25.5%.Further improvement in device power conversion efficiency(PCE)can be achieved by either optimizing perovskite films or designing novel device structures such as perovskite/Si tandem solar cells.With the marriage of perovskite and Si solar cells,a tandem device configuration is able to achieve a PCE exceeding the Shockley–Queisser limit of single-junction solar cells by enhancing the usage of solar spectrum.After several years of development,the highest PCE of the perovskite/Si tandem cell has reached 29.5%,which is higher than that of perovskite-and Si-based singlejunction cells.Here,in this review,we will(1)first discuss the device structure and fundamental working principle of both two-terminal(2T)and four-terminal(4T)perovskite/Si tandem solar cells;(2)second,provide a brief overview of the advances of perovskite/Si tandem solar cells regarding the development of interconnection layer,perovskite active layer,tandem device structure,and lightmanagement strategies;(3)third,discuss the challenges and opportunities for further developing perovskite/Si tandem solar cells.This review article,on the one hand,provides a comprehensive understanding to readers on the development of perovskite/Si tandems.On the other hand,it proposes various novel applications that may bring such tandems into the market in a near future. 展开更多
关键词 2-terminal 4-terminal innovative applications interconnection layer optical losses perovskite bandgap engineering perovskite/Si tandem solar cells
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有机太阳电池关键材料研究进展 被引量:1
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作者 童杨 肖作 +24 位作者 杜晓艳 左传天 李跃龙 吕梦岚 袁永波 易陈谊 郝锋 华雍 雷霆 林乾乾 孙宽 赵德威 段春晖 邵向锋 李伟 叶轩立 肖正国 张斌 边庆真 程远航 刘升建 程明 靳志文 杨上峰 丁黎明 《中国科学:化学》 CAS CSCD 北大核心 2020年第4期437-446,共10页
有机太阳电池具有质量轻、柔性、印刷制备等优点,有巨大的应用潜力,从其诞生那一刻起便引起了学术界和工业界的广泛研究兴趣.历经25年的发展,有机太阳电池效率已突破18%,其快速进步得益于不断涌现的高性能新材料和器件制备技术,以及对... 有机太阳电池具有质量轻、柔性、印刷制备等优点,有巨大的应用潜力,从其诞生那一刻起便引起了学术界和工业界的广泛研究兴趣.历经25年的发展,有机太阳电池效率已突破18%,其快速进步得益于不断涌现的高性能新材料和器件制备技术,以及对电池活性层形貌、分子堆积和器件机理的深入理解.基于有机共轭结构的电子给体和电子受体材料是决定有机太阳电池性能的关键材料.本文将以给、受体材料的发展历程为主线,聚焦那些明星材料和里程碑工作,阐述高性能关键材料的分子结构演变和进化过程,最后展望其面临的挑战和未来发展方向. 展开更多
关键词 有机太阳电池 关键材料 D-A共聚物给体 富勒烯受体 非富勒烯受体
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厚膜有机太阳电池效率突破16% 被引量:10
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作者 秦建强 张立秀 +10 位作者 肖作 陈珊珊 孙宽 臧志刚 易陈谊 袁永波 靳志文 郝锋 程远航 保秦烨 丁黎明 《Science Bulletin》 SCIE EI CSCD 2020年第23期1979-1982,M0003,共5页
近年来有机太阳电池效率突飞猛进,单结电池效率已经突破18%,然而这些高效率电池的活性层厚度通常只有100 nm左右,随着厚度增加,电池效率下降明显.为了实现有机太阳电池的产业化,发展对厚度不敏感,且可适用于卷对卷印刷制备的高性能厚膜... 近年来有机太阳电池效率突飞猛进,单结电池效率已经突破18%,然而这些高效率电池的活性层厚度通常只有100 nm左右,随着厚度增加,电池效率下降明显.为了实现有机太阳电池的产业化,发展对厚度不敏感,且可适用于卷对卷印刷制备的高性能厚膜电池势在必行.本文通过在D18:Y6二元活性层中加入少量富勒烯受体PC61BM,使得电池对厚度的敏感性显著降低. PC61BM的加入使厚膜活性层的电子和空穴迁移率明显提高,载流子传输更加平衡,并且显著降低了陷阱辅助复合.D18:Y6:PC61BM(1:1.6:0.2)三元电池在活性层厚度超过300 nm时,还能保持16%以上的效率,是目前性能最优异的厚膜有机太阳电池之一. 展开更多
关键词 电池效率 有机太阳电池 活性层 三元电池 载流子传输 空穴迁移率 厚膜 富勒烯
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钙钛矿太阳电池封装技术 被引量:3
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作者 程远航 杨庆旦 丁黎明 《Science Bulletin》 SCIE EI CSCD 2021年第2期100-102,M0003,共4页
Organometal halide perovskites with promising electro-optical properties have been emerged as leading semiconducting materials for solution-processed optoelectronic devices[1-3].Thanks to the great efforts from the ph... Organometal halide perovskites with promising electro-optical properties have been emerged as leading semiconducting materials for solution-processed optoelectronic devices[1-3].Thanks to the great efforts from the photovoltaic community during last decade,the power conversion efficiencies(PCEs)of perovskite solar cells(PVSCs)have risen from 3.8%to 25.2%,surpassing that of polycrystalline silicon solar cells[4,5].However,more than 90%of the photovoltaic market share is still taken by silicon solar cells. 展开更多
关键词 钙钛矿太阳电池 封装技术 PEROVSKITE
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多功能材料磷酸乙醇胺修饰SnO_(2)层实现柔性钙钛矿太阳能电池的光伏性能大幅提高 被引量:1
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作者 易子君 李鑫 +3 位作者 肖波 罗裕波 姜庆辉 杨君友 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3392-3401,共10页
SnO_(2)电子传输层(ETL)、钙钛矿薄膜及它们界面中的各种缺陷导致的非辐射复合损失极大地阻碍了柔性钙钛矿太阳能电池(PSCs)性能和稳定性的进一步提高.因此,迫切需要开发有效的策略来解决这些问题.在此,我们将多功能材料磷酸乙醇胺(PE)... SnO_(2)电子传输层(ETL)、钙钛矿薄膜及它们界面中的各种缺陷导致的非辐射复合损失极大地阻碍了柔性钙钛矿太阳能电池(PSCs)性能和稳定性的进一步提高.因此,迫切需要开发有效的策略来解决这些问题.在此,我们将多功能材料磷酸乙醇胺(PE)添加到SnO_(2)水溶胶中以抑制缺陷并制备高质量的ETL.结果表明,由于新共价键Sn–O–P的形成,PE的引入可以显著减少Sn悬挂键的数量,这有利于改善SnO_(2)的电学特性和获得致密的SnO_(2)薄膜.同时,PE分子的氨基(NH_(2))基团可以与钙钛矿中未配位的Pb^(2+)相互作用,从而抑制SnO_(2)/钙钛矿界面缺陷和改善钙钛矿薄膜质量.相应地,基于SnO_(2)-PE复合ETL的柔性和刚性PSCs实现了优异的光电转换效率,分别为18.48%和21.61%.此外,基于SnO_(2)-PE的柔性PSCs呈现出良好的弯曲耐久性,在1000次弯曲循环后仍保留初始效率的90.6%. 展开更多
关键词 ETL 多功能材料 光电转换效率 磷酸乙醇胺 钙钛矿薄膜 悬挂键 非辐射复合 界面缺陷
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Embedding physics domain knowledge into a Bayesian network enables layer-by-layer process innovation for photovoltaics 被引量:2
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作者 Zekun Ren Felipe Oviedo +15 位作者 Maung Thway Siyu I.P.Tian Yue Wang Hansong Xue Jose Dario Perea Mariya Layurova Thomas Heumueller Erik Birgersson Armin G.Aberle Christoph J.Brabec Rolf Stangl Qianxiao Li Shijing Sun Fen Lin Ian Marius Peters Tonio Buonassisi 《npj Computational Materials》 SCIE EI CSCD 2020年第1期1592-1600,共9页
Process optimization of photovoltaic devices is a time-intensive,trial-and-error endeavor,which lacks full transparency of the underlying physics and relies on user-imposed constraints that may or may not lead to a gl... Process optimization of photovoltaic devices is a time-intensive,trial-and-error endeavor,which lacks full transparency of the underlying physics and relies on user-imposed constraints that may or may not lead to a global optimum.Herein,we demonstrate that embedding physics domain knowledge into a Bayesian network enables an optimization approach for gallium arsenide(GaAs)solar cells that identifies the root cause(s)of underperformance with layer-by-layer resolution and reveals alternative optimal process windows beyond traditional black-box optimization.Our Bayesian network approach links a key GaAs process variable(growth temperature)to material descriptors(bulk and interface properties,e.g.,bulk lifetime,doping,and surface recombination)and device performance parameters(e.g.,cell efficiency).For this purpose,we combine a Bayesian inference framework with a neural network surrogate device-physics model that is 100×faster than numerical solvers.With the trained surrogate model and only a small number of experimental samples,our approach reduces significantly the time-consuming intervention and characterization required by the experimentalist.As a demonstration of our method,in only five metal organic chemical vapor depositions,we identify a superior growth temperature profile for the window,bulk,and back surface field layer of a GaAs solar cell,without any secondary measurements,and demonstrate a 6.5%relative AM1.5G efficiency improvement above traditional grid search methods. 展开更多
关键词 KNOWLEDGE NETWORK enable
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钙钛矿叠层太阳电池 被引量:2
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作者 方志敏 曾强 +17 位作者 左传天 张立秀 肖涵睿 程明 郝锋 保秦烨 张立学 袁永波 吴武强 赵德威 程远航 谭海仁 肖作 杨上峰 刘芳洋 靳志文 闫金定 丁黎明 《Science Bulletin》 SCIE EI CSCD 2021年第6期621-636,M0004,共17页
自2009年报道以来,钙钛矿太阳电池的能量转换效率从3.8%增长到25.5%,是发展最为迅猛的一类太阳电池.为了进一步提高能量转换效率,突破肖克利·奎伊瑟效率极限(S-Q极限),可以采用带隙互补的吸光材料制备多结太阳电池,从而提高太阳光... 自2009年报道以来,钙钛矿太阳电池的能量转换效率从3.8%增长到25.5%,是发展最为迅猛的一类太阳电池.为了进一步提高能量转换效率,突破肖克利·奎伊瑟效率极限(S-Q极限),可以采用带隙互补的吸光材料制备多结太阳电池,从而提高太阳光利用率.由于钙钛矿吸光材料具有可溶液加工、带隙可调的特性,它是制备叠层太阳电池的理想材料.本文介绍了近年来基于钙钛矿材料的高效叠层太阳电池:钙钛矿/硅,钙钛矿/铜铟镓硒,钙钛矿/钙钛矿和钙钛矿/有机叠层太阳电池.作者首先介绍了叠层电池的结构和工作原理,之后分别总结了以上四种叠层电池的重要进展,最后围绕器件结构、效率、大面积制备、稳定性、成本以及铅毒性这六个方面,讨论了未来钙钛矿叠层太阳电池面临的挑战.目前钙钛矿/硅、钙钛矿/铜铟镓硒和钙钛矿/钙钛矿叠层电池的能量转换效率分别达到了29.1%、25.9%和25.6%,均超过了相应单结电池的最高效率,有巨大发展空间.钙钛矿叠层太阳电池将会吸引越来越多的关注,成为太阳能研究领域的重要方向. 展开更多
关键词 能量转换效率 叠层太阳电池 叠层电池 多结太阳电池 钙钛矿太阳电池 铜铟镓硒 可调的 可溶液加工
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采用集成结构提高钙钛矿太阳电池性能
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作者 曾强 孟宪义 +9 位作者 方志敏 程明 杨上峰 袁永波 程远航 靳志文 保秦烨 刘芳洋 郝峰 丁黎明 《Science Bulletin》 SCIE EI CSCD 2021年第4期310-313,M0003,共5页
近几年,全无机钙钛矿太阳电池因其优异的热稳定性而受到广泛关注.尽管全无机钙钛矿材料可以耐受400℃以上的高温,热稳足性远远优于有机无机杂化钙钛矿材料,但其较大的禁带宽度限制了全无机钙钛矿太阳电池对光谱的利用范围,进而限制了太... 近几年,全无机钙钛矿太阳电池因其优异的热稳定性而受到广泛关注.尽管全无机钙钛矿材料可以耐受400℃以上的高温,热稳足性远远优于有机无机杂化钙钛矿材料,但其较大的禁带宽度限制了全无机钙钛矿太阳电池对光谱的利用范围,进而限制了太阳电池的效率.将有机体异质结与钙钛矿集成构筑集成太阳电池可以有效拓宽太阳电池的光谱响应范围.基于此概念,本文采用一种有机聚合物给体材料PTB7-Th,集成太阳电池结构获得了高性能的全无机钙钛矿CsPbI2Br太阳电池.结果表明,PTB7-Th可将CsPbI2Br太阳电池的光谱响应范围拓宽至770 nm;进一步对PTB7-Th掺杂锂盐提高空穴迁移率后,CsPbI2Br太阳电池在680~770 nm处的光电响应有显著提升.最终,CsPbI2Br太阳电池获得了14.63%的光电转换效率. 展开更多
关键词 钙钛矿太阳电池 光电转换效率 有机无机杂化钙钛矿 光谱响应范围 给体材料 有机聚合物 空穴迁移率 集成结构
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