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Diamond nanowire - a challenge from extremes

机译:金刚石纳米线——极端的挑战

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Crystalline diamond nanowires have been grown in a chemical vapor deposition (CVD) process under 900 ℃ and atmospheric pressure - an extraordinary find in diamond growth. These diamond nanowires are straight, thin and long, and uniform in diameter (60-90 nm) over their entire lengths of tens of microns. Extensive characterizations including electron microscopy and Raman spectroscopy were performed to confirm that the diamond nanowire has highly crystalline cubic diamond structure encased inside a graphitic or carbonaceous shell. Such a core-shell structure suggests a potential formation mechanism in the framework of an effectively lowered Gibbs free energy due to nano-capillary and surface charge pressure. The capillary pressure (inversely proportional to the wire radius) can be sufficiently high to allow the diamond phase to be thermodynamically favorable in the inner core while the outer shell takes on the graphitic phase. The properties of diamond can manifest themselves differently in the nanowire morphology. Examples include single-photon emission of nitrogen-vacancy and electron field-emission. Whereas the former has received much attention in the literature, the latter turned out to be just as impressive and is show-cased here for the first time.
机译:水晶钻石纳米线一直在增长化学气相沉积(CVD)过程在900年℃和大气压力——一个非凡的发现在金刚石的生长。是直的,瘦和长,统一在吗直径(60 - 90海里)的整个长度几十微米。包括电子显微镜和拉曼光谱进行确认金刚石纳米线具有高度水晶立方包裹在石墨或金刚石结构碳质层。提出了一个潜在的形成机制框架的一个有效地降低了吉布斯自由能源由于nano-capillary和表面电荷压力。线半径成正比)足够高,让钻石阶段在核心热力学有利而外壳需要石墨阶段。自己不同的纳米线形态。氮-空位和发射电子场发射。关注文学,后者原来是一样令人印象深刻的,是show-cased第一次在这里。

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