Chatterjee Joy, Chatterjee Abhijit, Hazra Partha
Department of Chemistry, Indian Institute of Science Education and Research (IISER), Pune, Dr. Homi Bhaba Road, Pashan, Pune - 411008, Maharashtra, India.
Centre for Energy Science, Indian Institute of Science Education and Research (IISER), Pune, Dr. Homi Bhaba Road, Pashan, Pune - 411008, Maharashtra, India.
Phys Chem Chem Phys. 2021 Nov 24;23(45):25850-25865. doi: 10.1039/d1cp03596g.
Enhancement of the emission quantum yield and expansion of the emission tunability spectrum are the key aspects of an emitter, which direct the evolution of future generation light harvesting materials. In this regard, small molecular ligand-protected Cu nanoclusters (SLCuNCs) have emerged as prospective candidates. Herein, we report the broadband emission tunability in a SLCuNC system, mediated by ligand replacement. 1,6-Hexanedithiol-protected blue emissive discrete Cu nanoclusters (CuNCs) and red emissive CuNC assemblies have been synthesized in one pot. The red emissive CuNC assemblies were characterized and found to be covalently-linked nanocluster superstructures. The blue emissive CuNC was further converted to a green-yellow emissive CuNC over time by a ligand replacement process, which was mediated by the oxidized form of the reducing agent used for synthesizing the blue emissive nanocluster. Steady-state emission results and fluorescence dynamics studies were used to elucidate that the ligand replacement process not only modulates the emission color but also alters the nature of emission from metal-centered intrinsic to ligand-centered extrinsic emission. Moreover, time-dependent blue to green-yellow emission tunability was demonstrated under optimized reaction conditions.
提高发射量子产率和扩展发射可调谐光谱范围是发光体的关键特性,它们引领着下一代光收集材料的发展。在这方面,小分子配体保护的铜纳米团簇(SLCuNCs)已成为颇具潜力的候选材料。在此,我们报道了通过配体置换实现的SLCuNC体系中的宽带发射可调谐性。已在同一反应体系中合成了由1,6 - 己二硫醇保护的蓝色发光离散铜纳米团簇(CuNCs)和红色发光CuNC聚集体。对红色发光CuNC聚集体进行了表征,发现其为共价连接的纳米团簇超结构。随着时间推移,蓝色发光CuNC通过配体置换过程进一步转变为绿黄色发光CuNC,该过程由用于合成蓝色发光纳米团簇的还原剂的氧化形式介导。利用稳态发射结果和荧光动力学研究来阐明,配体置换过程不仅调节发射颜色,还改变了发射性质,从以金属为中心的本征发射转变为以配体为中心的非本征发射。此外,在优化的反应条件下展示了随时间从蓝色到绿黄色的发射可调谐性。