Abbas Qaisar, Shinde Pragati A, Abdelkareem Mohammad Ali, Alami Abdul Hai, Mirzaeian Mojtaba, Yadav Arti, Olabi Abdul Ghani
Sustainable Energy & Power Systems Research Centre, RISE, University of Sharjah, Sharjah 27272, United Arab Emirates.
School of Engineering, Computing & Physical Sciences, University of the West of Scotland, Paisley PA1 2BE, UK.
Materials (Basel). 2022 Nov 4;15(21):7804. doi: 10.3390/ma15217804.
Graphene is fundamentally a two-dimensional material with extraordinary optical, thermal, mechanical, and electrical characteristics. It has a versatile surface chemistry and large surface area. It is a carbon nanomaterial, which comprises sp hybridized carbon atoms placed in a hexagonal lattice with one-atom thickness, giving it a two-dimensional structure. A large number of synthesis techniques including epitaxial growth, liquid phase exfoliation, electrochemical exfoliation, mechanical exfoliation, and chemical vapor deposition are used for the synthesis of graphene. Graphene prepared using different techniques can have a number of benefits and deficiencies depending on its application. This study provides a summary of graphene preparation techniques and critically assesses the use of graphene, its derivates, and composites in environmental applications. These applications include the use of graphene as membrane material for the detoxication and purification of water, active material for gas sensing, heavy metal ions detection, and CO conversion. Furthermore, a trend analysis of both synthesis techniques and environmental applications of graphene has been performed by extracting and analyzing Scopus data from the past ten years. Finally, conclusions and outlook are provided to address the residual challenges related to the synthesis of the material and its use for environmental applications.
从本质上讲,石墨烯是一种具有非凡光学、热学、力学和电学特性的二维材料。它具有多样的表面化学性质和大表面积。它是一种碳纳米材料,由以单原子厚度排列在六边形晶格中的sp杂化碳原子组成,赋予其二维结构。包括外延生长、液相剥离、电化学剥离、机械剥离和化学气相沉积在内的大量合成技术被用于石墨烯的合成。使用不同技术制备的石墨烯根据其应用可能有许多优点和缺点。本研究总结了石墨烯的制备技术,并批判性地评估了石墨烯及其衍生物和复合材料在环境应用中的使用情况。这些应用包括将石墨烯用作水解毒和净化的膜材料、气体传感的活性材料、重金属离子检测以及一氧化碳转化。此外,通过提取和分析过去十年的Scopus数据,对石墨烯的合成技术和环境应用进行了趋势分析。最后,给出了结论和展望,以应对与该材料合成及其在环境应用中的使用相关的遗留挑战。