光致发光
俄歇效应
激子
螺旋钻
材料科学
吸收(声学)
光电子学
比克西顿
半导体
量子阱
光子学
超快激光光谱学
光谱学
量子点
分子物理学
纳米晶
外延
量子
级联
受激发射
吸收光谱法
量子产额
化学物理
三极管
原子物理学
物理
光发射
自发辐射
量子点激光器
扩散
量子效率
胶体
作者
Dulanjan Harankahage,Divesh Nazar,Korneel Molkens,Mykhailo V. Bondarchuk,Christopher Hicks,Andrew A. Marder,Michael Montemurri,Adam Roach,Ivo Tanghe,L. Sun,Richard D. Schaller,Benjamin T. Diroll,Anton V. Malko,Alexander N. Tarnovsky,Dries Van Thourhout,Zeger Hens,Pieter Geiregat,Mikhail Zamkov
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-01-15
卷期号:20 (4): 3776-3790
标识
DOI:10.1021/acsnano.5c18640
摘要
Near-infrared (NIR) light sources based on colloidal semiconductor nanocrystals (NCs) represent a scalable, low-cost alternative to epitaxial semiconductor platforms. However, their performance remains hindered by rapid Auger recombination, a problem that is particularly pronounced in narrow-bandgap materials. Here, we report on CdS/HgS/CdS and CdS/HgCdSe/ZnS quantum shells (QSs), a class of spherical quantum wells specifically engineered for a suppression of nonradiative Auger processes. Fabricated QSs exhibit tunable NIR emission with photoluminescence quantum yields reaching ∼60% below 1000 nm and up to 30% near 1300 nm. Optical gain and stimulated emission were observed in CdS/HgS/CdS QSs. In contrast, CdS/HgCdSe/ZnS QSs displayed a photoinduced absorption in lieu of optical gain despite demonstrating a comparatively stronger Auger suppression. Transient absorption spectroscopy revealed that this phenomenon arises from the formation of bound multiexciton complexes that induce long-lived sub-bandgap multiexciton states. The observation of such bound excitonic clusters at room temperature offers a pathway toward nonlinear NIR photonic phenomena, including biexciton-exciton cascade emission, optical modulation, and single-exciton gain.
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