Australian Key Centre for Microscopy & Microanalysis, The University of Sydney, Madsen Building (F09), NSW, Sydney 2006, Australia.
Angew Chem Int Ed Engl. 2010 Mar 15;49(12):2114-38. doi: 10.1002/anie.200903463.
From diagnosis of life-threatening diseases to detection of biological agents in warfare or terrorist attacks, biosensors are becoming a critical part of modern life. Many recent biosensors have incorporated carbon nanotubes as sensing elements, while a growing body of work has begun to do the same with the emergent nanomaterial graphene, which is effectively an unrolled nanotube. With this widespread use of carbon nanomaterials in biosensors, it is timely to assess how this trend is contributing to the science and applications of biosensors. This Review explores these issues by presenting the latest advances in electrochemical, electrical, and optical biosensors that use carbon nanotubes and graphene, and critically compares the performance of the two carbon allotropes in this application. Ultimately, carbon nanomaterials, although still to meet key challenges in fabrication and handling, have a bright future as biosensors.
从危及生命疾病的诊断到战争或恐怖袭击中生物制剂的检测,生物传感器正成为现代生活的关键组成部分。许多最近的生物传感器都将碳纳米管作为传感元件,而越来越多的研究开始将新兴纳米材料石墨烯作为传感元件,石墨烯实际上是一种展开的碳纳米管。随着碳纳米材料在生物传感器中的广泛应用,及时评估这种趋势如何促进生物传感器的科学和应用是很重要的。本综述通过展示使用碳纳米管和石墨烯的电化学、电学和光学生物传感器的最新进展,探讨了这些问题,并批判性地比较了这两种碳同素异形体在该应用中的性能。最终,碳纳米材料尽管在制造和处理方面仍面临关键挑战,但作为生物传感器具有光明的前景。
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