化学
贵金属
成核
纳米晶
合金
纳米材料
聚合
化学工程
金属
纳米技术
纳米颗粒
质谱法
还原(数学)
纳米结构
分解
Crystal(编程语言)
量子点
晶体生长
作者
Jianze Zhang,Chenghui Zhu,Xinxing Zhang
摘要
Alloy nanocrystals (NCs) have attracted considerable attention due to their broad applications. Herein, we present examples of ultrasmall (<5 nm) noble metal alloy NCs, i.e., AuPd and PdPt NCs, synthesized by sprayed water microdroplets. Electrons generated at the air-water interface of microdroplets serve as the primary reducing species, enabling metal ion reduction in the absence of added reductants. Through physical characterizations and mass spectrometry analysis, we elucidate the unique formation mechanism of NCs: the air-water interface of microdroplets simultaneously promotes the reduction and polymerization of precursor ions, followed by efficient surface reduction of the polymerized metal clusters, forming nuclei that undergo subsequent coalescence. The submillisecond reaction time prevents excessive crystal growth, yielding ultrasmall NCs featuring high-energy facets. This work provides insights into nonclassical nucleation and reduction of metal ions, and demonstrates the unique capabilities of microdroplet chemistry in the manipulation of nanomaterial growth dynamics and structures.
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