Template approaches to preparing porous carbon

F. Su, Zuocheng Zhou, Wanping Guo, Jiajia Liu, X. Tian, X. Zhao
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引用次数: 6

Abstract

In comparison with traditional porous carbon materials such as activated carbons and carbon blacks, template-synthesized carbons can more easily and controllably achieve prescribed physical, chemical, and morphological properties for a wide range of novel applications. Our review of this relatively new field has shown that templating on length scales ranging from nanometers to micrometers is readily achievable, enabling one to design and build a desired scaffold of porous carbon. Clearly, a number of issues and challenges must be addressed before such carbons find practical applications. The high cost (because of the involvement of templates such as SBA-15 and MCM-48) and environmental impact (because of the use of corrosive chemicals such as HF and NaOH) represent two key issues. Control of infiltration of carbon into template pores is also a challenge. Nevertheless, we are optimistic that such template-synthesized hierarchical porous carbon structures may soon find applications, especially in emerging high-tech areas such as nanotechnology, biotechnology, and photonics.
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制备多孔碳的模板法
与传统的多孔碳材料(如活性炭和炭黑)相比,模板合成碳可以更容易和可控地达到规定的物理、化学和形态特性,具有广泛的新应用。我们对这个相对较新的领域的回顾表明,从纳米到微米的长度尺度上的模板很容易实现,使人们能够设计和构建理想的多孔碳支架。显然,在这种碳得到实际应用之前,必须解决一些问题和挑战。高成本(因为涉及模板,如SBA-15和MCM-48)和环境影响(因为使用腐蚀性化学品,如HF和NaOH)是两个关键问题。控制碳渗入模板孔也是一个挑战。然而,我们乐观地认为,这种模板合成的分层多孔碳结构可能很快就会得到应用,特别是在新兴的高科技领域,如纳米技术、生物技术和光子学。
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Chemistry and Physics of Carbon
Chemistry and Physics of Carbon 化学-工程:化工
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