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首页> 外文期刊>ACS applied materials & interfaces >Electron-Beam-Assisted Oxygen Purification at Low Temperatures for Electron-Beam-Induced Pt Deposits: Towards Pure and High-Fidelity Nanostructures
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Electron-Beam-Assisted Oxygen Purification at Low Temperatures for Electron-Beam-Induced Pt Deposits: Towards Pure and High-Fidelity Nanostructures

机译:电子束诱导的Pt沉积物在低温下的电子束辅助氧气纯化:朝着纯净和高保真纳米结构的方向发展

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摘要

Nanoscale metal deposits written directly by electron-beam-induced deposition, or EBID, are typically contaminated because of the incomplete removal of the original organometallic precursor. This has greatly limited the applicability of EBID materials synthesis, constraining the otherwise powerful direct-write synthesis paradigm. We demonstrate a low-temperature purification method in which platinum-carbon nanostructures deposited from MeCpP- tIVMe3 are purified by the presence of oxygen gas during a post-electron exposure treatment. Deposit thickness, oxygen pressure, and oxygen temperature studies suggest that the dominant mechanism is the electron-stimulated reaction of oxygen molecules adsorbed at the defective deposit surface. Notably, pure platinum deposits with low resistivity and retain the original deposit fidelity were accomplished at an oxygen temperature of only 50 °C.
机译:由于未完全去除原始有机金属前体,通常被电子束诱导沉积或EBID直接写入的纳米级金属沉积物被污染。这极大地限制了EBID材料合成的适用性,从而限制了原本功能强大的直接写入合成范例。我们展示了一种低温纯化方法,其中从MeCpP-tIVMe3沉积的铂-碳纳米结构在电子暴露后处理过程中通过存在氧气进行纯化。沉积物厚度,氧气压力和氧气温度研究表明,主要机理是吸附在有缺陷的沉积物表面的氧分子的电子刺激反应。值得注意的是,仅在50°C的氧气温度下即可完成具有低电阻率并保持原始沉积保真度的纯铂沉积。

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