纳米晶
锑
量子点
纳米材料
纳米技术
胶体
化学
吸收(声学)
氧化还原
纳米颗粒
胶体晶体
材料科学
吸收光谱法
光电子学
半导体材料
锑化镓
作者
Yifan Chen,Bin Zeng,Mengya Lu,Junchi Zhu,Qingyu Wang,Zifeng Liu,Xingyu Hu,Zhe Liu,Cong Sun,Junjie Zhang,Ning Dai,Yang Li
摘要
Colloidal quantum dots (QDs) with exceptional size-tunable optoelectronic properties enable a wide variety of optical and optoelectronic applications. Although established synthetic methods have advanced QD technologies, extending these strategies to highly coveted antimonide-based QDs persists as an unresolved challenge. Here, we develop an innovative "elemental nanocrystal redox (ENR)" strategy using zero-valent nanocrystals (NCs) as precursors, enabling the synthetic control of size-tunable colloidal antimonide QDs without the need for size-selection. The ENR strategy achieves synthetic control over InSb QDs with pure crystal structure and mid-infrared absorption exceeding 3000 nm. Furthermore, the versatility of the ENR strategy extends to the rarely reported GaSb and InGaSb alloyed QD systems. The results presented here significantly enrich the modulatory dimensions of colloidal synthesis and pioneer a new pathway for exploring other exotic colloidal nanomaterials that have previously posed significant synthetic challenges with traditional strategies.
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