Amerling Eric, Baniya Sangita, Lafalce Evan, Zhang Chuang, Vardeny Zeev Valy, Whittaker-Brooks Luisa
Department of Chemistry and ‡Department of Physics, University of Utah , Salt Lake City, Utah 84112, United States.
J Phys Chem Lett. 2017 Sep 21;8(18):4557-4564. doi: 10.1021/acs.jpclett.7b01741. Epub 2017 Sep 11.
Two-dimensional (2D) organic-inorganic hybrid perovskite multiple quantum wells that consist of multilayers of alternate organic and inorganic layers exhibit large exciton binding energies of order of 0.3 eV due to the dielectric confinement between the inorganic and organic layers. We have investigated the exciton characteristics of 2D butylammonium lead iodide, (CHNH)PbI using photoluminescence and UV-vis absorption in the temperature range of 10 K to 300 K, and electroabsorption spectroscopy. The evolution of an additional absorption/emission at low temperature indicates that this compound undergoes a phase transition at ≈250 K. We found that the electroabsorption spectrum of each structural phase contains contributions from both quantum confined exciton Stark effect and Franz-Keldysh oscillation of the continuum band, from which we could determine more accurately the 1s exciton, continuum band edge, and the exciton binding energy.
由交替的有机层和无机层多层组成的二维(2D)有机-无机杂化钙钛矿多量子阱,由于无机层和有机层之间的介电限制,表现出约0.3 eV量级的大激子结合能。我们使用光致发光和紫外-可见吸收在10 K至300 K的温度范围内以及电吸收光谱研究了二维碘化丁基铵(CHNH)PbI的激子特性。低温下额外吸收/发射的演变表明该化合物在约250 K时发生相变。我们发现每个结构相的电吸收光谱都包含量子限制激子斯塔克效应和连续能带的弗朗兹-凯尔迪什振荡的贡献,由此我们可以更准确地确定1s激子、连续能带边缘和激子结合能。