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沸石限域银团簇多色光致发光的起源:温度和共阳离子依赖的发光

Origin of the polychromatic photoluminescence of zeolite confined Ag clusters: temperature- and co-cation-dependent luminescence.

作者信息

Sun Li, Keshavarz Masoumeh, Romolini Giacomo, Dieu Bjorn, Hofkens Johan, de Jong Flip, Fron Eduard, Roeffaers Maarten B J, Van der Auweraer Mark

机构信息

Chem&Tech - Molecular Imaging and Photonics, KU Leuven Celestijnenlaan 200F 3001 Leuven Belgium

KU Leuven Core Facility for Advanced Spectroscopy Celestijnenlaan 200F 3001 Leuven Belgium

出版信息

Chem Sci. 2022 Aug 24;13(39):11560-11569. doi: 10.1039/d2sc03197c. eCollection 2022 Oct 12.

Abstract

Zeolite confined silver clusters (AgCLs) have attracted extensive attention due to their remarkable luminescent properties, but the elucidation of the underlying photophysical processes and especially the excited-state dynamics remains a challenge. Herein, we investigate the bright photoluminescence of AgCLs confined in Linde Type A zeolites (LTA) by systematically varying the temperature (298-77 K) and co-cation composition (Li/Na) and examining their respective influence on the steady-state and time-resolved photoluminescence. The observed polychromatic emission of the tetrahedral Ag(HO) clusters ranges from orange to violet and three distinct emitting species are identified, corresponding to three long-lived triplet states populated consecutively and separated by a small energy barrier. These long-lived species are at the origin of the polychromatic luminescence with high photoluminescence quantum yields. Furthermore, the Li-content dependence of decay times points to the importance of guest-host-guest interactions in tuning the luminescent properties with a 43% decrease of the dominating decay time by increasing Li content. Based on our findings, a simplified model for the photophysical kinetics is proposed that identifies the excited-state processes. The results outlined here pave the way for a rational design of confined metal clusters in various frames and inspire the specified applications of Ag-zeolites.

摘要

沸石限域银簇(AgCLs)因其卓越的发光特性而备受广泛关注,但阐明其潜在的光物理过程,尤其是激发态动力学仍是一项挑战。在此,我们通过系统改变温度(298 - 77 K)和共阳离子组成(Li/Na),并研究它们对稳态和时间分辨光致发光的各自影响,来探究限域在A型分子筛(LTA)中的AgCLs的明亮光致发光。观察到四面体Ag(HO) 簇的多色发射范围从橙色到紫色,并且识别出三种不同的发射物种,对应于三个依次填充且被小能量势垒隔开的长寿命三重态。这些长寿命物种是具有高光致发光量子产率的多色发光的起源。此外,衰减时间对Li含量的依赖性表明客体 - 主体 - 客体相互作用在调节发光特性方面的重要性,通过增加Li含量,主导衰减时间降低了43%。基于我们的发现,提出了一个用于光物理动力学的简化模型,该模型确定了激发态过程。此处概述的结果为合理设计各种框架中的限域金属簇铺平了道路,并激发了Ag沸石的特定应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0509/9555561/70c7f2e3e43a/d2sc03197c-f1.jpg

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