Department of Chemistry , Carnegie Mellon University , Pittsburgh , Pennsylvania 15213 , United States.
State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science , Fudan University , Shanghai 200438 , China.
J Am Chem Soc. 2019 Apr 3;141(13):5314-5325. doi: 10.1021/jacs.8b13558. Epub 2019 Mar 25.
The origin of the near-infrared photoluminescence (PL) from thiolate-protected gold nanoclusters (Au NCs, <2 nm) has long been controversial, and the exact mechanism for the enhancement of quantum yield (QY) in many works remains elusive. Meanwhile, based upon the sole steady-state PL analysis, it is still a major challenge for researchers to map out a definitive relationship between the atomic structure and the PL property and understand how the Au(0) kernel and Au(I)-S surface contribute to the PL of Au NCs. Herein, we provide a paradigm study to address the above critical issues. By using a correlated series of "mono-cuboctahedral kernel" Au NCs and combined analyses of steady-state, temperature-dependence, femtosecond transient absorption, and Stark spectroscopy measurements, we have explicitly mapped out a kernel-origin mechanism and clearly elucidate the surface-structure effect, which establishes a definitive atomic-level structure-emission relationship. A ∼100-fold enhancement of QY is realized via suppression of two effects: (i) the ultrafast kernel relaxation and (ii) the surface vibrations. The new insights into the PL origin, QY enhancement, wavelength tunability, and structure-property relationship constitute a major step toward the fundamental understanding and structural-tailoring-based modulation and enhancement of PL from Au NCs.
硫醇保护的金纳米簇(Au NCs,<2nm)的近红外光致发光(PL)的起源一直存在争议,许多工作中增强量子产率(QY)的确切机制仍然难以捉摸。同时,基于单一的稳态 PL 分析,研究人员仍然面临着一个重大挑战,即如何在原子结构和 PL 性质之间建立明确的关系,并了解 Au(0)核和 Au(I)-S 表面如何对 Au NCs 的 PL 做出贡献。在此,我们提供了一个范例研究来解决上述关键问题。通过使用一系列相关的“单核-八面体核”Au NCs,并结合稳态、温度依赖性、飞秒瞬态吸收和斯塔克光谱测量的综合分析,我们明确地阐明了核起源机制,并清楚地阐明了表面结构效应,从而建立了明确的原子级结构-发射关系。通过抑制两种效应,实现了QY 的约 100 倍增强:(i)超快核弛豫和(ii)表面振动。对 PL 起源、QY 增强、波长可调谐性以及结构-性能关系的新见解,为深入理解和基于结构剪裁的调制和增强 Au NCs 的 PL 迈出了重要一步。