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首页> 外文期刊>ACS Omega >Synthesis, Structural, Linear, and Nonlinear Optical Studies of Inorganic–Organic Hybrid Semiconductors (R–C6H4CHCH3NH3)2PbI4, (R = CH3, Cl)
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Synthesis, Structural, Linear, and Nonlinear Optical Studies of Inorganic–Organic Hybrid Semiconductors (R–C6H4CHCH3NH3)2PbI4, (R = CH3, Cl)

机译:无机-有机混合半导体(R–C6H4CHCH3NH3)2PbI4(R = CH3,Cl)的合成,结构,线性和非线性光学研究

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Synthesis, crystal structure, and optical properties of two-dimensional (2D) layered structurally slightly different inorganic–organic (IO) hybrid semiconductors (R–C6H4C2H4NH3)2PbI4 (R = CH3, Cl) are presented. They are naturally self-assembled systems where two (RNH3)+ moieties are sandwiched between two infinitely extended 2D layers of the [PbI6]4– octahedral network and treated as natural IO multiple quantum wells. While the former compound crystallizes into an orthorhombic system in the Cmc21 space group, the latter crystallizes into a monoclinic system in the space group P21/c. As a thin film, they are well-oriented along the (l00) direction. Both single crystals and thin films show strong room-temperature Mott type exciton features that are highly sensitive to the self-assembly and crystal packing. Linear (one-photon) and nonlinear (two-photon) optical probing of single crystals for exciton photoluminescence imaging and spectral spatial mapping provide deep insight into the layered re-arrangement and structural crumpling due to organic conformation. The strongly confined excitons, within the lowest band gap of inorganic, show distinctly different one- and two-photon excited photoluminescence peaks: free excitons from perfectly aligned 2D self-assembly and energy down-shifted excitons originated from the locally crumpled layered arrangement. Their structural aspects are successfully presented with proper correlation that emphasize various differences in physical and optical properties associated between these novel IO hybrids.
机译:介绍了二维(2D)层状结构略有不同的无机-有机(IO)杂化半导体(R–C6H4C2H4NH3)2PbI4(R = CH3,Cl)的合成,晶体结构和光学性质。它们是自然自组装的系统,其中两个(RNH3)+部分夹在[PbI6] 4–八面体网络的两个无限扩展的2D层之间,并被视为自然IO多量子阱。前者在Cmc21空间群中结晶成斜方晶系,而后者在空间群P21 / c中结晶成单斜晶系。作为薄膜,它们沿(100)方向取向良好。单晶和薄膜都显示出强大的室温Mott型激子特性,对自组装和晶体堆积高度敏感。单晶体的线性(单光子)和非线性(双光子)光学探测,用于激子光致发光成像和光谱空间映射,可深入了解由于有机构象而引起的分层重排和结构起皱。在无机物的最小带隙内的强约束激子显示出明显不同的一光子和二光子激发的光致发光峰:来自完美对齐的2D自组装的自由激子和能量局部下移的激子源自局部皱缩的层状排列。它们的结构方面已成功提出,并具有适当的相关性,这些相关性强调了这些新型IO杂种之间相关联的物理和光学特性的各种差异。

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