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首页> 外文期刊>CrystEngComm >Synthesis of Ag-Au and Ag-Pd alloy triangular hollow nanoframes by galvanic replacement reactions without and with post-treatment using NaCl in an aqueous solution
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Synthesis of Ag-Au and Ag-Pd alloy triangular hollow nanoframes by galvanic replacement reactions without and with post-treatment using NaCl in an aqueous solution

机译:在不使用和在水溶液中使用氯化钠进行后处理的情况下,通过电流置换反应合成Ag-Au和Ag-Pd合金三角形中空纳米框架

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摘要

Ag-Au and Ag-Pd alloy triangular hollow nanoframes were prepared using galvanic replacement (GR) reactions of Ag nanoprisms with HAuCl4 and Na2PdCl4 in an aqueous solution. Their growth mechanisms were studied by observing transmission electron microscopic (TEM) and TEM-energy dispersed X-ray spectroscopic (EDS), XRD, and ultraviolet (UV)-visible (Vis)-near infrared (NIR) extinction spectral data. Results show that Ag-Au alloy triangular frames start with formation of a truncated prism, followed by expansion of a hollow structure to the interior of the prism, reformation of the triangular shape, and finally formation of a triangular frame at ambient temperature within a few minutes. On the other hand, triangular Ag-Pd alloy plates are slowly formed by the addition of Na2PdCl4 and heating at 100 °C for 30-120 min. Results show that post-treatment using saturated NaCl solution is effective for the transformation of Ag-Pd alloy nanoplates to Ag-Pd nanoframes. The difference in the formation of nanoframes is explained by the difference in the dealloying rates between Ag-Au alloys by AuCl4~- and Ag-Pd alloys by Pd2+. XRD data suggested that hexagonally closed packed (hcp) layers are involved as major components of the triangular Ag-Au and Ag-Pd alloy nanoframes.
机译:Ag-Au和Ag-Pd合金三角形空心纳米框架是通过在水溶液中使用Ag纳米棱镜与HAuCl4和Na2PdCl4的电流置换(GR)反应制备的。通过观察透射电子显微镜(TEM)和TEM能量分散X射线光谱仪(EDS),XRD和紫外(UV)-可见(Vis)-近红外(NIR)消光光谱数据研究了它们的生长机理。结果表明,Ag-Au合金三角框架首先是形成截顶的棱柱,然后将空心结构扩展到棱柱内部,再形成三角形状,最后在室温下在几度内形成三角框架。分钟。另一方面,通过添加Na2PdCl4并在100°C下加热30-120分钟,可以缓慢形成三角形的Ag-Pd合金板。结果表明,使用饱和NaCl溶液进行后处理可有效地将Ag-Pd合金纳米板转变为Ag-Pd纳米框架。纳米框架形成的差异可以通过AuCl4〜-的Ag-Au合金与Pd2 +的Ag-Pd合金之间的脱合金率差异来解释。 XRD数据表明,六角封闭堆积(hcp)层是三角形Ag-Au和Ag-Pd合金纳米框架的主要成分。

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