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通过有机层内的供体-受体相互作用调节二维混合层状钙钛矿中的激子结合能。

Tunable exciton binding energy in 2D hybrid layered perovskites through donor-acceptor interactions within the organic layer.

机构信息

Department of Chemistry, Northwestern University, Evanston, IL, USA.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Nat Chem. 2020 Aug;12(8):672-682. doi: 10.1038/s41557-020-0488-2. Epub 2020 Jul 6.

Abstract

The strength of electrostatic interactions within semiconductors strongly affects their performance in optoelectronic devices. An important target is the tuning of a material's exciton binding energy-the energy binding an electron-hole pair through the electrostatic Coulomb force-independent of its electronic band gap. Here, we report on the doping of a family of two-dimensional hybrid perovskites, in which inorganic lead halide sheets alternate with naphthalene-based organic layers, with tetrachloro-1,2-benzoquinone (TCBQ). For four out of seven n = 1 perovskites, the incorporation of the electron-accepting TCBQ dopant into the organic sublattice containing the electron-donating naphthalene species enabled the tuning of the materials' 1s exciton binding energy. The naphthalene-TCBQ electron donor-acceptor interactions increased the electrostatic screening of the exciton, in turn lowering its binding energy relative to the undoped perovskite-by almost 50% in one system. Structural and optical characterization showed that the inorganic lattice is not significantly perturbed even though the layer-to-layer spacing increases upon molecular dopant incorporation.

摘要

半导体内部静电相互作用的强度强烈影响其在光电器件中的性能。一个重要的目标是调整材料的激子束缚能——通过静电库仑力束缚电子-空穴对的能量——而不依赖于其电子能带隙。在这里,我们报告了一系列二维混合钙钛矿的掺杂情况,其中无机铅卤片与基于萘的有机层交替排列,加入四氯-1,2-苯醌(TCBQ)。在七个 n=1 钙钛矿中的四个中,将电子受体 TCBQ 掺杂剂掺入含有电子供体萘类物质的有机亚晶格中,使得材料的 1s 激子束缚能得以调整。萘-TCBQ 电子给体-受体相互作用增加了激子的静电屏蔽,从而降低了其束缚能,与未掺杂的钙钛矿相比,在一个系统中降低了近 50%。结构和光学特性表明,即使在分子掺杂剂掺入后层间间距增加,无机晶格也没有受到明显的干扰。

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