首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Bimetallic core-shell nanocomposites using weak reducing agent and their transformation to alloy nanostructures
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Bimetallic core-shell nanocomposites using weak reducing agent and their transformation to alloy nanostructures

机译:使用弱还原剂的双金属核-壳纳米复合材料及其向合金纳米结构的转化

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摘要

An in situ seeding growth methodology towards the preparation of core-shell nanoparticles composed of noble metals has been developed by employing trimethylamine borane (TMAB) as the reducing agent. Being a weak reducing agent, TMAB is able to distinguish the smallest reduction potential window of any two metals which renders selective reduction of metal ions thus affording a core-shell architecture of the nanoparticles. A dramatic effect of solvent was noted during the reduction of Ag+ ions: an immediate reduction took place at room temperature when dry THF was used as solvent however, usage of wet THF (THF used directly from the bottle) brings out the reduction only at reflux conditions. In the case of Au and Pd nanoparticles, preparation was found to be independent of the quality of solvent used. Au nanoparticles are realized at room temperature whereas reflux conditions are required in the case of Pd nanoparticles. This difference in behavior of the monometallic nanoparticles was successfully exploited to construct different noble metal nanoparticles with core-shell architectures such as Au@Ag, Ag@Au, and Ag@Pd. Transformation of these core-shell nanoparticles to their thermodynamically stable alloy counterparts is also demonstrated under very mild conditions reported to date.
机译:通过使用三甲胺硼烷(TMAB)作为还原剂,已经开发出了一种用于制备由贵金属组成的核壳纳米粒子的原位种子生长方法。作为弱还原剂,TMAB能够区分任何两种金属的最小还原电位窗口,从而使金属离子选择性还原,从而提供了纳米粒子的核-壳结构。在还原Ag +离子的过程中,注意到了溶剂的显着作用:当使用干燥的THF作为溶剂时,在室温下立即发生还原,但是,使用湿的THF(直接从瓶中使用THF)仅在回流时才产生还原作用条件。对于Au和Pd纳米颗粒,发现制备方法与所用溶剂的质量无关。金纳米颗粒在室温下实现,而钯纳米颗粒则需要回流条件。单金属纳米粒子在行为上的差异已被成功地用于构建具有核壳结构的不同贵金属纳米粒子,例如Au @ Ag,Ag @ Au和Ag @ Pd。在迄今为止报道的非常温和的条件下,也证明了这些核壳纳米粒子向其热力学稳定的合金对应物的转变。

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