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Carbon-Based Nanomaterials/Allotropes: A Glimpse of Their Synthesis Properties and Some Applications

机译:碳基纳米材料/同素异形体:它们的合成性质和一些应用的简要介绍

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摘要

Carbon in its single entity and various forms has been used in technology and human life for many centuries. Since prehistoric times, carbon-based materials such as graphite, charcoal and carbon black have been used as writing and drawing materials. In the past two and a half decades or so, conjugated carbon nanomaterials, especially carbon nanotubes, fullerenes, activated carbon and graphite have been used as energy materials due to their exclusive properties. Due to their outstanding chemical, mechanical, electrical and thermal properties, carbon nanostructures have recently found application in many diverse areas; including drug delivery, electronics, composite materials, sensors, field emission devices, energy storage and conversion, etc. Following the global energy outlook, it is forecasted that the world energy demand will double by 2050. This calls for a new and efficient means to double the energy supply in order to meet the challenges that forge ahead. Carbon nanomaterials are believed to be appropriate and promising (when used as energy materials) to cushion the threat. Consequently, the amazing properties of these materials and greatest potentials towards greener and environment friendly synthesis methods and industrial scale production of carbon nanostructured materials is undoubtedly necessary and can therefore be glimpsed as the focal point of many researchers in science and technology in the 21st century. This is based on the incredible future that lies ahead with these smart carbon-based materials. This review is determined to give a synopsis of new advances towards their synthesis, properties, and some applications as reported in the existing literatures.
机译:单一实体和各种形式的碳已经在技术和人类生活中使用了多个世纪。自史前以来,诸如石墨,木炭和炭黑的碳基材料已被用作书写和绘画材料。在过去的二十五年半中,共轭碳纳米材料,特别是碳纳米管,富勒烯,活性炭和石墨,由于其独特的性能而被用作能源材料。由于其优异的化学,机械,电和热性能,碳纳米结构最近在许多不同领域得到了应用。包括药物输送,电子产品,复合材料,传感器,现场发射装置,能量存储和转换等。根据全球能源前景,预计到2050年世界能源需求将翻一番。这需要一种新的有效手段来实现将能源供应量增加一倍,以应对不断挑战。碳纳米材料被认为是缓解威胁的合适方法和有前途的(当用作能源材料时)。因此,毫无疑问,这些材料的惊人性能以及向更绿色,更环保的合成方法和工业规模生产碳纳米结构材料的最大潜力是必要的,因此可以作为21世纪许多科学和技术研究人员的焦点。这是基于这些智能碳基材料所具有的令人难以置信的未来。决定对本综述进行概述,以概述其合成,性质和现有文献中报道的一些应用方面的新进展。

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