化学
静水压力
光致发光
单层
纳米材料
量子点
密度泛函理论
带隙
胶体
高压
纳米晶
激子
流体静力平衡
格子(音乐)
凝聚态物理
环境压力
芯(光纤)
化学物理
纳米力学
晶格常数
电子能带结构
电子结构
纳米技术
谱线
分子物理学
光电子学
纳米颗粒
维数之咒
拉曼光谱
体积模量
光谱学
拉伤
硬化(计算)
复合材料
光学光谱
直接和间接带隙
作者
River A. Leversee,Zifei Chen,Arun Ashokan,Paul Mulvaney,J. Mathias Weber
摘要
The high pressure response of the optical properties of nanomaterials affords unique insight into their mechanical properties and their interplay with the reduced dimensionality of the material. We probe the effects of high hydrostatic pressure on the optical band gap in zincblende CdSe/CdZnS core-shell nanoplatelets with 4 and 6 monolayer thick cores by following the evolution of their photoluminescence spectra from ambient pressure up to ∼6 GPa. We observe that the band gap increases nearly linearly by ∼33 meV/GPa, significantly slower than for bulk CdSe or for colloidal CdSe quantum dots in the same size regime. Using density functional theory and theoretical modeling, we trace this behavior to hardening of the CdSe core due to strain induced by lattice mismatch between core and shell, impacting the electronic structure of the core.
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