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Comparison of ZnO surface modification with gas-phase propiolic acid at high and medium vacuum conditions

机译:高和中真空条件下气相丙酸对ZnO表面改性的比较

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摘要

Recent advances in preservation of the morphology of ZnO nanostructures during dye sensitization required the use of a two-step preparation procedure. The first step was the key for preserving ZnO materials morphology. It required exposing clean ZnO nanostructures to a gas-phase prop-2-ynoic acid (propiolic acid) in vacuum. This step resulted in the formation of a robust and stable surface-bound carboxylate with ethynyl groups available for further modification, for example, with click chemistry. This paper utilizes spectroscopic and microscopic investigations to answer several questions about this modification and to determine if the process can be performed under medium vacuum conditions instead of high vacuum procedures reported earlier. Comparing the results of the preparation process at medium vacuum of 0.5 Torr base pressure with the previously reported investigations of the same process in high vacuum of 10−5 Torr suggests that both processes lead to the formation of the same surface species, confirming that the proposed modification scheme can be widely applicable for ZnO sensitization procedures and does not require the use of high vacuum. Additional analysis comparing the computationally predicted surface structures with the results of spectroscopic investigations yields the more complete description of the surface species resulting from this approach.
机译:在染料敏化过程中保持ZnO纳米结构形态的最新进展要求使用两步制备程序。第一步是保持ZnO材料形态的关键。它需要在真空中将干净的ZnO纳米结构暴露在气相的丙-2-炔酸(丙酸)中。该步骤导致形成坚固且稳定的具有乙炔基的表面结合的羧酸盐,所述乙炔基可用于进一步修饰,例如点击化学。本文利用光谱和显微镜研究来回答有关此修改的几个问题,并确定该过程是否可以在中等真空条件下进行,而不是先前报道的高真空过程中进行。将0.5 Torr基本压力的中等真空度下的制备过程的结果与先前报道的在10 -5 Torr的高真空度下对同一过程的研究进行比较,结果表明这两个过程都导致了相同过程的形成。表面物种,证实了所提出的改性方案可广泛适用于ZnO敏化程序,并且不需要使用高真空。将计算预测的表面结构与光谱研究的结果进行比较的附加分析可对这种方法产生的表面种类进行更完整的描述。

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