卤化物
材料科学
光致发光
非共价相互作用
超分子化学
超分子手性
晶体工程
金属
金属卤化物
氢键
手性(物理)
八面体
光化学
结晶学
溴化物
晶体结构
化学物理
纳米技术
发光
混合材料
光电子学
异质结
超分子组装
自旋电子学
作者
Ranjan Das,Jarek Viera,Md Sazedul Islam,Tarannuma Ferdous Manny,JS. Raaj Vellore Winfred,Xinsong Lin,Peng Xiong,Biwu Ma
标识
DOI:10.1021/acs.chemmater.6c00135
摘要
White-light-emitting chiral materials represent a promising class of photoactive materials with great potential for optoelectronic and spintronic applications. Here, we report a series of white-light-emitting chiral two-dimensional (2D) organic metal halide hybrids (OMHHs), (R-/S-3XMBA)2PbBr4 (X = F, Cl, Br), synthesized from meta-position-halogen-substituted α-methylbenzylammonium (MBA) bromide salts and lead bromide (PbBr2). By tuning noncovalent hydrogen bonding, halogen–halogen, and halogen−π interactions at the organic–metal halide interfaces, we achieve systematic control over the structural rigidity and octahedral distortion within the inorganic layers. Among these materials, (R/S-3BrMBA)2PbBr4 exhibit broadband emissions centered around 535 nm, with large full widths at half-maximum (FWHMs) of ∼230 nm and the highest photoluminescence quantum efficiencies (PLQEs) of ∼30%, attributed to their high rigid crystal packing and optimal structural distortion within their inorganic sublattices. These materials also display pronounced chiroptical activity, with (R/S-3BrMBA)2PbBr4 exhibiting a gCD of ∼1.42 × 10–3 at 390 nm and (R-3FMBA)2PbBr4 achieving a record gCD of ∼1.49 × 10–2 at 394 nm, among the highest reported for chiral 2D OMHHs. This work establishes an effective molecular design strategy to simultaneously realize broadband white-light emission and robust structural chirality in 2D OMHHs, paving the way toward multifunctional chiral light-emitting materials.
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