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Chapter 10 Creation of Blue Light Emitting Color Centers in Nanosized Diamond for Different Applications

机译:第10章为不同应用创建纳米钻石中的蓝光发射色情中心

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Plasma immersion ion implantation and focused ion beam treatment techniques were used to create nitrogen-related complex defect centers in detonation nanodiamond crystals. Helium implantation was used to produce vacancies in the crystal structure, which was followed by the introduction of nitrogen ions (with the same method). Heat treatment at 1,023 K was applied to initiate vacancy diffusion and formation of complex defect centers. The sp~2 carbon content of the samples formed during the implantation and the high-temperature annealing was decreased by oxidation at 723 K in air. Changes in the bonding structure were monitored by Raman and infrared spectroscopic measurements after each step of the defect creation process. It was found that the photoluminescence of nanosized diamond changes remarkably as a consequence of different treatments and a new, narrow, intense emission band develops in the deep blue wavelength region. The N3 nitrogen-related complex defect center was considered as source of this fine structured emission band in the luminescence spectrum.
机译:等离子体浸渍离子注入和聚焦离子束处理技术用于产生爆炸纳米胺晶体中的氮相关复杂缺陷中心。使用氦气植入在晶体结构中产生空位,然后引入氮离子(具有相同的方法)。施用1,023 k的热处理以启动空位扩散和复杂缺陷中心的形成。在植入过程中形成的样品的SP〜2碳含量和高温退火在空气中以723k氧化降低。在缺陷创建过程的每个步骤之后,通过拉曼和红外光谱测量监测键合结构的变化。发现纳米型金刚石的光致发光因不同的处理和新的窄强度发射带在深蓝色波长区域中产生而变化显着变化。 N3氮相关复杂的缺陷中心被认为是发光光谱中该细结构发射带的源。

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