Cyclopropenium (C3H3)+ as an Aromatic Alternative A‑Site Cation for Hybrid Halide Perovskite Architectures
收藏Figshare2018-01-17 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Cyclopropenium_C_sub_3_sub_H_sub_3_sub_sup_sup_as_an_Aromatic_Alternative_A_Site_Cation_for_Hybrid_Halide_Perovskite_Architectures/5796915
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Hybrid halide perovskites are an emerging class of photovoltaic materials, boasting high solar efficiencies from relatively simple preparations. However, the chemical diversity of the A-site organic cation is limited, generally due to steric constraints of the (PbI3)− cage. Herein we describe the use of a non-benzenoid Hückel aromatic, (C3H3)+, as a viable alternative to the readily employed methylammonium, formamidinium, and guanidinium A-site cations. (C3H3)+ may lead to greater moisture stability due to the lack of an acidic proton relative to the current (H–NR3)+-based systems while still boasting a narrow electronic band gap (Eg = 1.5 eV) and mobile holes and electrons (mh* = −1.27 and me* = 0.77, respectively).
创建时间:
2018-01-17



