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Catalytic CVD synthesis of boron nitride and carbon nanomaterials - synergies between experiment and theory

机译:致氮化硼和碳纳米材料的催化CVD合成 - 实验与理论的协同作用

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摘要

Low-dimensional carbon and boron nitride nanomaterials - hexagonal boron nitride, graphene, boron nitride nanotubes and carbon nanotubes - remain at the forefront of advanced materials research. Catalytic chemical vapour deposition has become an invaluable technique for reliably and cost-effectively synthesising these materials. In this review, we will emphasise how a synergy between experimental and theoretical methods has enhanced the understanding and optimisation of this synthetic technique. This review examines recent advances in the application of CVD to synthesising boron nitride and carbon nanomaterials and highlights where, in many cases, molecular simulations and quantum chemistry have provided key insights complementary to experimental investigation. This synergy is particularly prominent in the field of carbon nanotube and graphene CVD synthesis, and we propose here it will be the key to future advances in optimisation of CVD synthesis of boron nitride nanomaterials, boron nitride - carbon composite materials, and other nanomaterials generally.
机译:低维碳和氮化硼纳米材料 - 六边形氮化硼,石墨烯,氮化硼纳米管和碳纳米管 - 仍然处于先进材料研究的最前沿。催化化学气相沉积已成为可靠且经济有效地合成这些材料的宝贵技术。在本文中,我们将强调实验和理论方法之间的协同作用,增强了这种合成技术的理解和优化。本综述检测CVD在氮化硼和碳纳米材料中应用的最新进展,并突出,在许多情况下,在许多情况下,在许多情况下,分子模拟和量子化学提供了与实验研究互补的关键见解。该协同作用在碳纳米管和石墨烯CVD合成领域尤为突出,并且在此提出了在这里优化氮化硼纳米材料,氮化硼 - 碳复合材料和其他纳米材料的未来进展的关键。

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