A-site cation influence on the conduction band of lead bromide perovskites

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作者
Gabriel J. Man
Chinnathambi Kamal
Aleksandr Kalinko
Dibya Phuyal
Joydev Acharya
Soham Mukherjee
Pabitra K. Nayak
Håkan Rensmo
Michael Odelius
Sergei M. Butorin
机构
[1] Uppsala University,Condensed Matter Physics of Energy Materials, Division of X
[2] Stockholm University,ray Photon Science, Department of Physics and Astronomy
[3] AlbaNova University Center,Department of Physics
[4] HRDS,Theory and Simulations Laboratory
[5] Raja Ramanna Centre for Advanced Technology,Homi Bhabha National Institute
[6] Training School Complex,Division of Material and Nano Physics, Department of Applied Physics
[7] Anushakti Nagar,Tata Institute of Fundamental Research, 36/P
[8] Deutsches Elektronen-Synchrotron DESY,undefined
[9] KTH Royal Institute of Technology,undefined
[10] Gopanpally Village,undefined
[11] Serilingampally Mandal,undefined
[12] GJM Scientific Consulting,undefined
来源
Nature Communications | / 13卷
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摘要
Hot carrier solar cells hold promise for exceeding the Shockley-Queisser limit. Slow hot carrier cooling is one of the most intriguing properties of lead halide perovskites and distinguishes this class of materials from competing materials used in solar cells. Here we use the element selectivity of high-resolution X-ray spectroscopy and density functional theory to uncover a previously hidden feature in the conduction band states, the σ-π energy splitting, and find that it is strongly influenced by the strength of electronic coupling between the A-cation and bromide-lead sublattice. Our finding provides an alternative mechanism to the commonly discussed polaronic screening and hot phonon bottleneck carrier cooling mechanisms. Our work emphasizes the optoelectronic role of the A-cation, provides a comprehensive view of A-cation effects in the crystal and electronic structures, and outlines a broadly applicable spectroscopic approach for assessing the impact of chemical alterations of the A-cation on perovskite electronic structure.
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