Department of Chemistry and Pharmacy & Interdisciplinary Center for Molecular Materials (ICMM), Friedrich-Alexander-Universität Erlangen-Nürnberg , Egerlandstr. 3, 91058 Erlangen, Germany.
J Am Chem Soc. 2014 Dec 10;136(49):17308-16. doi: 10.1021/ja510183c. Epub 2014 Nov 25.
We report the characterization of carbon nanodots (CNDs) synthesized under mild and controlled conditions, that is, in a microwave reactor. The CNDs thus synthesized exhibit homogeneous and narrowly dispersed optical properties. They are thus well suited as a testbed for studies of the photophysics of carbon-based nanoscopic emitters. In addition to steady-state investigations, time-correlated single-photon counting, fluorescence up-conversion, and transient pump probe absorption spectroscopy were used to elucidate the excited-state dynamics. Moreover, quenching the CND-based emission with electron donors or acceptors helped shed light on the nature of individual states. Density functional theory and semiempirical configuration-interaction calculations on model systems helped understand the fundamental structure-property relationships for this novel type of material.
我们报告了在温和和受控条件下合成的碳纳米点(CNDs)的特性,即在微波反应器中。因此,所合成的 CNDs 表现出均匀且窄分散的光学性质。因此,它们非常适合作为研究基于碳的纳米级发射器光物理的试验台。除了稳态研究之外,还使用时间相关单光子计数、荧光上转换和瞬态泵探针吸收光谱来阐明激发态动力学。此外,用电子供体或受体猝灭基于 CND 的发射有助于揭示各个状态的性质。对模型体系的密度泛函理论和半经验组态相互作用计算有助于理解这种新型材料的基本结构-性质关系。
J Am Chem Soc. 2014-11-25
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