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Lewis 酸助力的高效荷移金纳米簇发光。

Highly Efficient Luminescence from Charge-Transfer Gold Nanoclusters Enabled by Lewis Acid.

机构信息

Fujian Key Laboratory of Drug Target Discovery and Structural and Functional Research, School of Pharmacy, Fujian Medical University, Fuzhou350004, China.

出版信息

J Phys Chem Lett. 2022 Oct 13;13(40):9526-9533. doi: 10.1021/acs.jpclett.2c02724. Epub 2022 Oct 6.

Abstract

Understanding the complicated intramolecular charge transfer (ICT) behaviors of nanomaterials is crucial to the development of high-quality nanoluminophores for various applications. However, the ICT process in molecule-like metal nanoclusters has been rarely explored. Herein, a proton binding-induced enhanced ICT state is discovered in 6-aza-2-thiothymine-protected gold nanoclusters (ATT-AuNCs). Such an excited-state electron transfer process gives rise to the weakened and red-shifted photoluminescence of these nanoclusters. By the joint use of this newfound ICT mechanism and a restriction of intramolecular motion (RIM) strategy, a red shift in the emission maxima of 30 nm with 27.5-fold higher fluorescence quantum efficiency is achieved after introducing rare-earth scandium ion (Sc) into ATT-AuNCs. Furthermore, it is found that upon the addition of Sc, the photoinduced electron transfer (PET) rate from ATT-AuNCs to minocycline is largely accelerated by forming a donor-bridge-acceptor structure. This paper offers a simple method to modulate the luminescent properties of metal nanoclusters for the rational design of next-generation sensing platforms.

摘要

理解纳米材料复杂的分子内电荷转移(ICT)行为对于开发各种应用的高质量纳米发光体至关重要。然而,分子状金属纳米团簇中的 ICT 过程很少被探索。本文中,发现了质子结合诱导的增强的 ICT 态在 6-氮杂-2-硫代胸腺嘧啶保护的金纳米团簇(ATT-AuNCs)中。这种激发态电子转移过程导致这些纳米团簇的光致发光减弱和红移。通过联合使用这种新发现的 ICT 机制和分子内运动限制(RIM)策略,在 ATT-AuNCs 中引入稀土钪离子(Sc)后,发射峰红移 30nm,荧光量子效率提高 27.5 倍。此外,研究发现,加入 Sc 后,通过形成给体-桥-受体结构,极大地加速了 ATT-AuNCs 向米诺环素的光诱导电子转移(PET)速率。本文为调控金属纳米团簇的发光性能提供了一种简单的方法,为下一代传感平台的合理设计提供了思路。

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