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Contributions of Cs and Rb on Inhibiting Photo-induced Phase Segregation and En-hancement Optoelectronic Performances of MA_(1-y)XyPbI_(1.8)Br_(1.2)(X=Cs,Rb)Single Crystals
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作者 Qing Yao Kaiyu Wang +8 位作者 Jie Zhang Changqian Li Chenyu Shang Feitong Chen Qi Huang Qiqi Zhao Weiwei Zhang Xiaoyuan Zhan jianxu ding 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2022年第5期77-84,共8页
Introducing inorganic cation into hybrid organic-inorganic perovskites(HOIPs)has attracted great attention because of the enhancement stabilities without sacrificing their excellent optoelectronic properties.Here,we i... Introducing inorganic cation into hybrid organic-inorganic perovskites(HOIPs)has attracted great attention because of the enhancement stabilities without sacrificing their excellent optoelectronic properties.Here,we introduce Cs and Rb into MAPbI_(1.8)Br_(1.2)single crystals(SCs)to dig out the mixed cation effect on optoelectronic performances and phase stabilities.Both Rb and Cs can increase the lattice capacity,which is sufficient to relieve the lattice stress caused by photon energy,thus achieving the purpose of stabilizing the lattice structure and inhibiting migration of halide ions,compared with MAPbI_(1.8)Br_(1.2)SC.On the other hand,the smaller polarity of Rb and Cs reduces the electron-phonon coupling,thus significantly inhibiting the migration of halide ions.Meanwhile,through planar photo-detectors,MA_(0.9)Cs_(0.1)PbI_(1.8)Br_(1.2)-based device behaves much excellent optoelectronic performance(R=0.170 A/W,EQE=51.39%,D^(*)=4.42×10^(12)Jones,on/off ratio:~522). 展开更多
关键词 perovskite single crystal photo-induced phase SEGREGATION mixed A-cation OPTOELECTRONIC PERFORMANCES
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