|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Increasing open circuit voltage by adjusting work function of hole-transporting materials in perovskite solar cells显示文摘一系列传导性的聚合物,即, poly (3-methylthiophene )(PMT ) , poly (thiophene )( 磅) , poly (3-bromothiophene )(PBT ) 并且 poly (3-chlorothiophene )(%) ,经由电气化学的聚合过程被准备。随后,他们是的申请在 CH 3 NH 3 PbI 3 perovskite 太阳能电池被探索。讲道理地增加 HTM 的工作功能在改进开的电路电压证明有益,这被发现(V 有 ITO/conductive-polymer/CH 3)> NH 3 PbI 3/C60/BCP/Ag 结构。另外, higher-V 有 higher-work-function HTM 的 oc 设备展出了更高的再结合电阻。1.04 V 的最高开的电路电压与 % 从设备被获得,与工作功能 of-5.4 eV,作为搬运洞的层。它的功率变换效率达到了约16.5%的价值,与高度充满 0.764 的因素, 1.01 V 的可估计的开的电压和 21.4 mAmedian 的短路电流密度为 Zn 的大约 5 ility 的轨道的集体估计, Cu , Se , Mn ,我, Fe ,瞬间和 Br 。mea 覈 ? 覈?? | Weibo Yan Yu Li Senyun Ye Yunlong Li Haixia Rao Zhiwei Liu Shufeng Wang Zuqiang Bian Chunhui Huang | 2016 | Nano Research2016,9,6: | 7 |
| 2 | Solution processed inorganic V20x as interfacial function materials for inverted planar-heterojunction perovskite solar cells with enhanced efficiency显示文摘 | Haitao Peng Weihai Sun Yunlong Li Senyun Ye Haixia Rao Weibo Yan Huanping Zhou Zuqiang Bian Chunhui Huang | 2016 | Nano Research2016,9,10: | 4 |
| 3 | Rapid and Complete Conversion of CH3NH3PbI3 for Perovskite/C60 Planar-Heterojunction Solar Cells by Two-Step Deposition显示文摘 | Weihai Sun Yunlong Li Weibo Yan Haitao Peng Senyun Ye Haixia Rao Ziran Zhao Zhiwei Liu Zuqiang Bian Chunhui Huang | 2017 | Chinese Journal of Chemistry2017,35,5: | 2 |
| 4 | Recent advances in the development of colorimetric analysis and testing based on aggregation-induced nanozymes显示文摘Colorimetric sensing strategies as a powerful point-of-care testing(POCT) tool have attracted significant interest in various chem/biosensing applications.Taking the excellent bare-eye-detectable signaling feature,nanozymes-based colorimetric sensors enable more potential applications and have been a new forefront in the colorimetric POCT analysis toward different target analytes.However,the low catalytic activity of nanozymes in most cases limits their practical application.Recent efforts demonstrate that the aggregation-induced nanozymes provide a general means to modulate nanozymes activity and enhance colorimetric sensing performances of some nanozymes-based colorimetric sensors.But there are few reports are explored to discuss and review such aggregation-induced nanozymes and their colorimetric sensing applications.To highlight the advances and progress in aggregation-induced nanozymes based colorimetric assays,we herein summary the fundamentals,classify and applications of this newlydeveloping field,focusing on the aggregation-induced activity enhancement of nanozymes(AIAEnanozymes) with a significant 'signal-on' feature and aggregation-induced activity inhibition of nanozymes(AIAI-nanozymes) with a dramatical 'signal-of' characteristics.Finally,we also propose the current challenges and the future prospects on both AIAE-nanozymes and AIAI-nanozymes. | Honghong Rao Xin Xue Mingyue Luo Haixia Liu Zhonghua Xue | 2021 | Chinese Chemical Letters2021,32,1: | 1 |
| 5 | Versatile aza-BODIPY-based low-bandgap conjugated small molecule for light harvesting and near-infrared photodetection显示文摘The versatile nature of organic conjugated materials renders their flawless integration into a diverse family of optoelectronic devices with light-harvesting,photodetection,or light-emitting capabilities.Classes of materials that offer the possibilities of two or more distinct optoelectronic functions are particularly attractive as they enable smart applications while providing the benefits of the ease of fabrication using low-cost processes.Here,we develop a novel,multi-purpose conjugated small molecule by combining boron-azadipyrromethene(aza-BODIPY)as electron acceptor with triphenylamine(TPA)as end-capping donor units.The implemented donor–acceptor–donor(D–A–D)configuration,in the form of TPA-azaBODIPY-TPA,preserves ideal charge transfer characteristics with appropriate excitation energy levels,with the additional ability to be used as either a charge transporting interlayer or light-sensing semiconducting layer in optoelectronic devices.To demonstrate its versatility,we first show that TPA-azaBODIPY-TPA can act as an excellent hole transport layer in methylammonium lead triiodide(MAPbI3)-based perovskite solar cells with measured power conversion efficiencies exceeding 17%,outperforming control solar cells with PEDOT:PSS by nearly 60%.Furthermore,the optical bandgap of 1.49 eV is shown to provide significant photodetection in the wavelength range of up to 800 nm where TPA-azaBODIPY-TPA functions as donor in near-infrared organic photodetectors(OPDs)composed of fullerene derivatives.Overall,the established versatility of TPA-azaBODIPY-TPA,combined with its robust thermal stability as well as excellent solubility and processability,provides a new guide for developing highly efficient multi-purpose electronic materials for the next-generation of smart optoelectronic devices. | Gurudutt Bhat Marcin Kielar Haixia Rao Mahnaz D.Gholami Isabel Mathers Astrid C.R.Larin Thomas Flanagan Enkhtur Erdenebileg Annalisa Bruno Amandeep Singh Pannu Kathryn E.Fairfull-Smith Emad L.Izake Pankaj Sah Yeng Ming Lam Ajay K.Pandey Prashant Sonar | 2022 | InfoMat2022,4,12: | 0 |