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Near-infrared–driven decomposition of metal precursors yields amorphous electrocatalytic films

机译:金属前体的近红外驱动分解产生非晶态电催化膜

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摘要

Amorphous metal-based films lacking long-range atomic order have found utility in applications ranging from electronics applications to heterogeneous catalysis. Notwithstanding, there is a limited set of fabrication methods available for making amorphous films, particularly in the absence of a conducting substrate. We introduce herein a scalable preparative method for accessing oxidized and reduced phases of amorphous films that involves the efficient decomposition of molecular precursors, including simple metal salts, by exposure to near-infrared (NIR) radiation. The NIR-driven decomposition process provides sufficient localized heating to trigger the liberation of the ligand from solution-deposited precursors on substrates, but insufficient thermal energy to form crystalline phases. This method provides access to state-of-the-art electrocatalyst films, as demonstrated herein for the electrolysis of water, and extends the scope of usable substrates to include nonconducting and temperature-sensitive platforms.
机译:缺乏远距离原子序的无定形金属基薄膜已发现可用于从电子应用到多相催化的应用。尽管如此,特别是在没有导电基底的情况下,可用于制造非晶膜的制造方法有限。我们在此介绍一种可扩展的制备方法,用于访问非晶膜的氧化相和还原相,该方法涉及通过暴露于近红外(NIR)辐射来有效分解分子前体(包括简单的金属盐)。 NIR驱动的分解过程提供了足够的局部加热,以触发配体从基板上溶液沉积的前体中释放出来,但没有足够的热能形成结晶相。如本文所证明的,该方法提供了用于水电解的最先进的电催化剂膜,并将可用基材的范围扩展至包括非导电和温度敏感的平台。

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