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首页> 外文期刊>Nanoscale >Ligand-core NLO-phores: a combined experimental and theoretical approach to the two-photon absorption and two-photon excited emission properties of small-ligated silver nanoclusters
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Ligand-core NLO-phores: a combined experimental and theoretical approach to the two-photon absorption and two-photon excited emission properties of small-ligated silver nanoclusters

机译:Ligand-core NLO-phores:结合实验双光子和理论方法吸收和双光子激发发射small-ligated银纳米束的性质

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We report a combined experimental and theoretical study of the two-photon absorption and excited emission properties of monodisperse ligand stabilized Ag-11, Ag-15 and Ag-31 nanoclusters in aqueous solutions. The nanoclusters were synthesized using a cyclic reduction under oxidative conditions and separated by vertical gel electrophoresis. The two-photon absorption cross-sections of these protected noble metal nanoclusters measured within the biologically attractive 750-900 nm window are several orders of magnitude larger than that reported for commercially available standard organic dyes. The two-photon excited fluorescence spectra are also presented for excitation wavelengths within the same excitation spectral window. They exhibit size-tunability. Because the fundamental photophysical mechanisms underlying these multiphoton processes in ligand protected clusters with only a few metal atoms are not fully understood yet, a theoretical model is proposed to identify the key driving elements. Elements that regulate the dipole moments and the nonlinear optical properties are the nanocluster size, its structure and the charge distribution on both the metal core and the bound ligands. We coined this new class of NLO materials as "Ligand-Core" NLO-phores.
机译:我们报告一个实验和理论相结合研究双光子吸收和兴奋单分散的配体的发射特性稳定Ag-11, Ag-15 Ag-31发光机制水的解决方案。使用循环还原下合成氧化条件和垂直隔开凝胶电泳。这些受保护的贵金属的横截面在生物发光测量有吸引力的几个订单750 - 900 nm窗口报告的大小大于商用标准的有机染料。双光子激发荧光光谱也提出了激发波长内同样的激发光谱窗口。size-tunability。这些物理机制在配体多光子过程保护集群只有少数金属原子完全理解,理论模型提出了识别的关键驱动因素。元素,调节和偶极矩非线性光学特性是纳米大小,其结构和电荷分布金属芯和配体。创造了这个新类的NLO材料" Ligand系列"不-phores。

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