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The role of oxygen in plasmon-driven transformation of silver nanoparticles

机译:氧在等离子体驱动的银纳米粒子转化中的作用

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Plasmon-driven transformation (PDTr) of silver nanoparticles is a very valuable tool for formation of various anisotropic silver nanostructures. PDTr involves two steps: slow surface dissolution of silver nanoparticles, and redeposition of dissolved silver by the photocatalytic reduction of Ag+ cations. Photocatalytic reduction of Ag+ occurs preferentially at such places of silver nanostructures, at which strong surface plasmons are excited (usually sharp edges, tips). Therefore, during PDTr the inhomogeneity of nanoparticles may increase. Up to now all synthesis of Ag nanoparticles utilizing PDTr have been carried out in the solution containing dissolved oxygen. In this contribution we have shown that when another oxidising agent (e.g., 1,4-benzoquinone) is present in the reaction mixture, the PDTr of silver nanoparticles can be carried out even in the deoxidised solution. Moreover, using oxidising agents other than oxygen allows for some modification of the PDTr process (especially synthesis of smaller Ag nanostructures). Explanation of the observed phenomenon is proposed (involving complete oxidation by the dissolved oxygen of some very small Ag clusters). (C) 2016 Elsevier B.V. All rights reserved.
机译:银纳米粒子的等离子驱动相变(PDTr)是形成各种各向异性银纳米结构的非常有价值的工具。 PDTr涉及两个步骤:银纳米颗粒的表面缓慢溶解,以及通过光催化还原Ag +阳离子来重新溶解银。 Ag +的光催化还原优先发生在银纳米结构的这些位置,在该位置会激发强烈的表面等离激元(通常是锋利的边缘,尖端)。因此,在PDTr期间,纳米颗粒的不均匀性可能增加。到目前为止,所有利用PDTr合成Ag纳米颗粒的方法都是在含有溶解氧的溶液中进行的。在这一贡献中,我们表明,当反应混合物中存在另一种氧化剂(例如1,4-苯醌)时,即使在脱氧溶液中也可以进行银纳米粒子的PDTr。此外,使用除氧以外的氧化剂可以对PDTr工艺进行某些修改(尤其是合成较小的Ag纳米结构)。建议对观察到的现象进行解释(涉及一些非常小的银团簇的溶解氧的完全氧化)。 (C)2016 Elsevier B.V.保留所有权利。

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