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Towards nano-organic chemistry: perspectives for a bottom-up approach to the synthesis of low-dimensional carbon nanostructures

机译:对nano-organic化学:视角自底向上的方法合成的低维碳纳米结构

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摘要

Low-dimensional carbon nanostructures, such as nanotubes and graphenes, represent one of the most promising classes of materials, in view of their potential use in nanotechnology. However, their exploitation in applications is often hindered by difficulties in their synthesis and purification. Despite the huge efforts by the research community, the production of nanostructured carbon materials with controlled properties is still beyond reach. Nonetheless, this step is nowadays mandatory for significant progresses in the realization of advanced applications and devices based on low-dimensional carbon nanostructures. Although promising alternative routes for the fabrication of nanostructured carbon materials have recently been proposed, a comprehensive understanding of the key factors governing the bottom-up assembly of simple precursors to form complex systems with tailored properties is still at its early stages. In this paper, following a survey of recent experimental efforts in the bottom-up synthesis of carbon nanostructures, we attempt to clarify generalized criteria for the design of suitable precursors that can be used as building blocks in the production of complex systems based on sp~2 carbon atoms and discuss potential synthetic strategies. In particular, the approaches presented in this feature article are based on the application of concepts borrowed from traditional organic chemistry, such as valence-bond theory and Clar sextet theory, and on their extension to the case of complex carbon nanomaterials. We also present and discuss a validation of these approaches through first-principle calculations on prototypical systems. Detailed studies on the processes involved in the bottom-up fabrication of low-dimensional carbon nanostructures are expected to pave the way for the design and optimization of precursors and efficient synthetic routes, thus allowing the development of novel materials with controlled morphology and properties that can be used in technological applications.
机译:低维碳纳米结构,如碳纳米管和石墨烯,代表之一最有前途的材料,针对他们在纳米技术潜在用途。他们开发的应用程序通常是阻碍了合成和困难净化。研究社区的生产纳米碳材料的控制属性是依旧遥不可及。这一步是现在强制意义重大发展先进的实现基于低维的应用程序和设备碳纳米结构。替代路线的制造纳米碳材料最近被提出,全面了解管理自底向上装配的关键因素简单的前体形成的复杂系统定制属性仍处于初期阶段。在本文中,最近的一项调查自底向上的合成实验的努力碳纳米结构,我们试图澄清广义条件合适的设计可以用作构建块的前兆复杂的生产系统基于sp ~ 2碳原子和讨论潜在的合成策略。在这篇文章中都是基于应用程序的概念借鉴传统的有机化学,等价键理论和明白”六重奏理论,在扩展的情况下复杂的碳纳米材料。这些方法的验证通过第一原理计算原型系统。参与的自下而上的加工低维碳纳米结构将设计和铺平了道路优化的前兆和高效合成路线,从而使发展新材料的形态和控制属性,可用于技术应用程序。

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