纳米团簇
光致发光
分子间力
等结构
材料科学
化学物理
电化学发光
电荷(物理)
电子转移
消灭
光激发
结晶学
金属
反向
化学
密度泛函理论
电子
纳米技术
发光
工具链
分子物理学
电极
正电子湮没
作者
Kaiyang Kuang,Chuanjun Zhou,Jiahao Liu,Wenjun Ma,Xiao Wei,Man‐Bo Li,Shuang Chen,Manzhou Zhu
摘要
ABSTRACT Atomically precise metal nanoclusters are promising electrochemiluminescent (ECL) materials. However, the correlation between their solid‐state photoluminescence (PL) and ECL remains ambiguous, severely hindering the rational design of high‐performance solid‐state ECL materials. Herein, we report two nanoclusters, Au 5 Ag 13 (DPPP) 4 (C 6 F 5 S) 10 and [Au x Ag 17‐x ((DPPP) 5 (C 6 F 5 S) 8 ]SbF 6 , which share an identical Au 5 Ag 8 metal core but differ slightly in peripheral motifs, thus exhibiting a striking inverse solid‐state PL–ECL relationship. Single‐crystal structures and Hirshfeld surface analysis reveal that the stronger π–π interactions and higher molecular packing density in (AuAg) 18 facilitate efficient intermolecular electron transfer and charge migration, which are more critical than excited‐state generation and annihilation during the ECL process. This work demonstrates that charge transfer between nanoclusters and the electrode surface outweighs intrinsic excited‐state annihilation and decay in solid‐state ECL, providing a new mechanistic guideline for designing high‐performance ECL materials beyond the traditional pursuit of strong PL.
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