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Hole-Selective Contact with Molecularly Tailorable Reactivity for Passivating High-Performing Inverted Perovskite Solar Cells
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作者 Wenlin Jiang Yingie Hu +2 位作者 Fengzhu Li Francis R.Lin Alex K-Y.Jen 《CCS Chemistry》 CSCD 2024年第7期1654-1661,共8页
The precisely customizable attributes of self-assembled monolayers(SAMs)molecules at the atomic level hold the potential to facilitate efficient hole selection and interface passivation simultaneously.However,the corr... The precisely customizable attributes of self-assembled monolayers(SAMs)molecules at the atomic level hold the potential to facilitate efficient hole selection and interface passivation simultaneously.However,the correlation between the exposure of passivating groups on the surface and device performance remains unexplored.Herein,we introduce two newly designed SAM molecules,Cbz2S and Cbz2SMe,incorporating cyclic disulfide or two flanking thiomethyls by modifying the 4,5-position of carbazole to adjust the Lewis basicity of the SAM-modified surface.Despite possessing suitable energetic alignment,Cbz2S with more-exposed sulfur atoms exhibited inferior device performance due to excessive reactivity,leading to an overpopulation of PbI2 crystallites at the buried perovskite interface.In contrast,the screening effect from the methyl groups of Cbz2SMe optimized SAM reactivity,exquisitely integrating buried interface passivation and hole selection together.Consequently,the champion inverted perovskite solar cell(PSC)employing Cbz2SMe achieved an impressive power conversion efficiency of 24.42%,accompanied by prolonged stability.This work demonstrates the feasibility of incorporating Lewis-basic passivation groups into SAM molecules and elucidates the relationship between the reactivity of SAM passivation groups and device performance.These findings provide valuable insights for the design of novel multifunctional SAM molecules,further advancing the performance of PSCs. 展开更多
关键词 self-assembled monolayer perovskite solar cell hole-selective layer carbazole derivatives defect passivation
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Efficient wide-bandgap perovskite solar cells with open-circuit voltage deficit below 0.4 V via hole-selective interface engineering
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作者 Xiaoyu Ji Shuo Zhang +5 位作者 Furong Yu Huidong Zhang Liqing Zhan Yue Hu Wei-Hong Zhu Yongzhen Wu 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第6期2102-2110,共9页
Wide-bandgap mixed-halide perovskite solar cells(WBG-PSCs)are promising top cells for efficient tandem photovoltaics to achieve high power conversion efficiency(PCE)at low cost.However,the open-circuit voltage(V_(OC))... Wide-bandgap mixed-halide perovskite solar cells(WBG-PSCs)are promising top cells for efficient tandem photovoltaics to achieve high power conversion efficiency(PCE)at low cost.However,the open-circuit voltage(V_(OC))of WBG-PSCs is still unsatisfactory as the V_(OC)-deficit is generally larger than 0.45 V.Herein,we report a buried interface engineering strategy that substantially improves the V_(OC)of WBG-PSCs by inserting amphiphilic molecular hole-selective materials featuring with a cyanovinyl phosphonic acid(CPA)anchoring group between the perovskite and substrate.The assembly and redistribution of CPA-based amphiphilic molecules at the perovskite-substrate buried interface not only promotes the growth of a low-defect crystalline perovskite thin film,but also suppresses the photo-induced halide phase separation.The energy level alignment between wide-bandgap perovskite and the hole-selective layer is further improved by modulating the substituents on the triphenylamine donor moiety(methoxyls for MPA-CPA,methyls for Me PA-CPA,and bare TPA-CPA).Using a 1.68 e V bandgap perovskite,the Me PA-CPA-based devices achieved an unprecedentedly high V_(OC)of 1.29 V and PCE of 22.3%under standard AM 1.5 sunlight.The V_(OC)-deficit(<0.40 V)is the lowest value reported for WBG-PSCs.This work not only provides an effective approach to decreasing the V_(OC)-deficit of WBG-PSCs,but also confirms the importance of energy level alignment at the charge-selective layers in PSCs. 展开更多
关键词 cyanovinyl phosphonic acid energy level alignment hole-selective material open-circuit voltage wide-bandgap perovskite
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Advantages and challenges of self-assembled monolayer as a hole-selective contact for perovskite solar cells
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作者 Songran Wang Huanxin Guo Yongzhen Wu 《Materials Futures》 2023年第1期93-102,共10页
Charge-transporting layers(CTLs)are important in determining the performance and stability of perovskite solar cells(PSCs).Recently,there has been considerable use of self-assembled monolayers(SAMs)as charge-selective... Charge-transporting layers(CTLs)are important in determining the performance and stability of perovskite solar cells(PSCs).Recently,there has been considerable use of self-assembled monolayers(SAMs)as charge-selective contacts,especially for hole-selective SAMs in inverted PSCs as well as perovskite involving tandem solar cells.The SAM-based charge-selective contact shows many advantages over traditional thin-film organic/inorganic CTLs,including reduced cost,low optical and electric loss,conformal coating on a rough substrate,simple deposition on a large-area substrate and easy modulation of energy levels,molecular dipoles and surface properties.The incorporation of various hole-selective SAMs has resulted in high-efficiency single junction and tandem solar cells.This topical review summarizes both the advantages and challenges of SAM-based charge-selective contacts,and discusses the potential direction for future studies. 展开更多
关键词 hole-selective contact self-assembled monolayer conformal coating covalent bonding perovskite solar cells
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免掺杂、非对称异质接触晶体硅太阳电池的研究进展
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作者 赵生盛 徐玉增 +4 位作者 陈俊帆 张力 侯国付 张晓丹 赵颖 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第4期306-316,共11页
免掺杂、非对称异质接触的新型太阳电池由于近几年的飞速发展,理论转化效率已达到28%,具有较大的发展空间,引起了人们的重视.由于传统晶硅太阳电池产业存在生产设备成本高、原材料易燃易爆等诸多限制,市场对太阳电池产业低成本、绿色无... 免掺杂、非对称异质接触的新型太阳电池由于近几年的飞速发展,理论转化效率已达到28%,具有较大的发展空间,引起了人们的重视.由于传统晶硅太阳电池产业存在生产设备成本高、原材料易燃易爆等诸多限制,市场对太阳电池产业低成本、绿色无污染的期待越来越高,极大地增加了免掺杂、非对称异质接触的新型太阳电池研究和开发的必要性.为了进一步加快免掺杂、非对称异质接触晶体硅太阳电池的研究进度,本文对其发展现状进行了综述,着重讨论了过渡金属氧化物(TMO)载流子选择性运输的基本原理、制备技术以及空穴传输层、电子传输层和钝化层对基于TMO构建的免掺杂、非对称异质接触(DASH)太阳电池性能的影响,以期对电池的工作机理、材料选择有更深刻的认识,为新型高效的DASH太阳电池制备提供指导. 展开更多
关键词 免掺杂、非对称异质接触 空穴传输 电子传输 过渡金属氧化物
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基于MoO_(x)选择性接触的SHJ太阳电池研究进展
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作者 陈云 蔡厚道 《电源技术》 CAS 北大核心 2021年第7期960-963,共4页
非化学计量比氧化钼即MoO_(x)是一种n型半导体材料,能够取代硅异质结太阳电池中的p型非晶硅,输运n型晶体硅中的光生空穴。基于MoO_(x)空穴选择性接触的硅异质结太阳电池已经取得了高达23.5%的效率,并且有望降低生产成本。总结了基于MoO_... 非化学计量比氧化钼即MoO_(x)是一种n型半导体材料,能够取代硅异质结太阳电池中的p型非晶硅,输运n型晶体硅中的光生空穴。基于MoO_(x)空穴选择性接触的硅异质结太阳电池已经取得了高达23.5%的效率,并且有望降低生产成本。总结了基于MoO_(x)空穴选择性接触的硅异质结太阳电池的研究进展,综述了电池的空穴输运机制,为优化光伏器件性能和设计新型太阳电池提供一定借鉴作用。 展开更多
关键词 MoO_(x) 空穴选择性接触 硅异质结太阳电池 空穴输运机制
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