钙钛矿(结构)
铁电性
材料科学
圆二色性
非线性光学
极地的
相变
结晶学
相(物质)
化学物理
非线性光学
非线性系统
凝聚态物理
手性(物理)
溴化物
光学
光电子学
工作(物理)
约束(计算机辅助设计)
对映体
空间组
正交晶系
二次谐波产生
空格(标点符号)
对映体过量
光学材料
作者
Chang‐Chun Fan,Shulin Jiao,Qiang-Qiang Bi,Jili Wu,Hai‐Luo Fu,Cheng‐Dong Liu,Guo‐Wei Du,Zhi‐Chao Huang‐Fu,Wei Wang
摘要
ABSTRACT The exploration of 2D perovskites and chiral nonlinear optical materials has drawn significant interest due to their structural tunability and strong optical responses. However, the development of quasi‐2D perovskites has long been constrained by the limited choice of A‐site cations imposed by the traditional tolerance factor. In this study, we present a new 2D tri‐layered lead bromide perovskite (4AM) 4 Pb 3 Br 10 ( n = 3) with the general formula (A ′ ) 2 (A) n −1 M n X 3 n +1 , in which 4‐aminomonpholine cations (4AM) that act simultaneously as A‐site and spacer components, exhibiting an ultrahigh tolerance factor of 1.74—far beyond conventional limits. Crystallizing in the polar space group Cc , the compound shows an order‐disorder ferroelectric phase transition at 418 K. Interestingly it also exhibits notable chiral nonlinear optical properties, including strong second‐harmonic generation circular dichroism ( g SHG‐CD ≈ 0.63). This work breaks the classic tolerance factor constraint and opens a pathway for designing new chiral nonlinear optical materials in low‐dimensional perovskites.
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