E3-Earth, Energy and Environment, Institute for Advanced Sustainability Studies e.V. Berliner Str. 130, 14467 Potsdam (Germany).
ChemSusChem. 2014 Mar;7(3):670-89. doi: 10.1002/cssc.201300961. Epub 2014 Jan 13.
The production of carbon aerogels based on the conversion of inexpensive and abundant precursors using environmentally friendly processes is a highly attractive subject in materials chemistry today. This article reviews the latest developments regarding the rapidly developing field of carbonaceous aerogels prepared from biomass and biomass-derived precursors, highlighting exciting and innovative approaches to green, sustainable nanomaterial synthesis. A review of the state-of-the-art technologies will be provided with a specific focus on two complimentary synthetic approaches developed upon the principles of green chemistry. These carbonaceous aerogel synthesis strategies, namely the Starbon and carbogel approaches, can be regarded as "top-down" and "bottom-up" strategies, respectively. The structural properties can be easily tailored by controlling synthetic parameters such as the precursor selection and concentration, the drying technique employed and post-synthesis temperature annealing. In addition to these parameters, the behavior of these sustainable carbon aerogel platforms in a variety of environmental and energy-related applications will also be discussed, including water remediation and fuel cell chemistry (i.e., the oxygen reduction reaction). This Review reveals the fascinating variety of highly porous, versatile, nanostructured, and functional carbon-based aerogels accessible through the highlighted sustainable synthetic platforms.
基于使用环保工艺将廉价且丰富的前体制备成碳气凝胶的生产,是当今材料化学中一个极具吸引力的课题。本文综述了近年来在以生物质及其衍生前体制备碳气凝胶这一快速发展领域的最新进展,重点介绍了绿色、可持续纳米材料合成中令人兴奋和创新的方法。本文将提供对现有技术的综述,特别关注基于绿色化学原理开发的两种互补的合成方法。这两种碳气凝胶合成策略,即 Starbon 法和碳凝胶法,可以分别被视为“自上而下”和“自下而上”的策略。通过控制如前体选择和浓度、所采用的干燥技术以及后合成温度退火等合成参数,可以轻松地调整结构性能。除了这些参数之外,还将讨论这些可持续碳气凝胶平台在各种环境和能源相关应用中的行为,包括水修复和燃料电池化学(即氧还原反应)。这篇综述揭示了通过所强调的可持续合成平台可获得的各种具有迷人特性的高多孔、多功能、纳米结构和功能性碳基气凝胶。