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Thermo-electrochemical coupling for room temperature thermocatalysis in pyroelectric ZnO nanorods

机译:热电ZnO纳米棒室温度热涂层热电化学耦合

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A strong thermo-electrochemical coupling in solvothermally-synthesized ZnO nanorods is achieved by combining pyroelectric effects and electrochemical oxidation, and is employed for room temperature thermocatalysis. Under 22-62 degrees C heating- cooling cycles, ZnO nanorods are shown to possess high thermocatalytic activity for Rhodamine B, resulting in similar to 98.15% decomposition. The active species are shown to be hydroxyl and superoxide radicals generated from the reaction between pyroelectrically-induced charges and the hydroxyl ions/oxygen gas in solution. After being recycled six times, the ZnO shows no decrease in thermocatalytic activity. Thermocatalysis offers a non-toxic, highly efficient, recyclable approach for utilization of thermal energy at room temperature.
机译:通过结合热电效应和电化学氧化来实现溶剂热合成的ZnO纳米棒中强大的热电化学耦合,并用于室温热涂层。 在22-62摄氏度下的加热冷却循环下,显示ZnO纳米棒对罗丹明B具有高热催化活性,导致98.15%的分解。 活性物质被示出为从热电诱导的电荷和羟基离子/溶液中的羟基离子/氧气之间产生的羟基和超氧化物自由基。 再循环六次后,ZnO显示出热催化活性的降低。 热透析提供无毒,高效,可回收的可回收方法,可在室温下使用热能。

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