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二维材料、合成、表征和毒性:批判性综述。

2D materials, synthesis, characterization and toxicity: A critical review.

机构信息

Department of Mathematics and Sciences, College of Arts and Applied Sciences, Dhofar University, Salalah, Oman.

Department of Mathematics and Sciences, College of Arts and Applied Sciences, Dhofar University, Salalah, Oman.

出版信息

Chem Biol Interact. 2022 Sep 25;365:110081. doi: 10.1016/j.cbi.2022.110081. Epub 2022 Aug 7.

Abstract

Nanotechnology is an arena of exploration and innovation concerned with building things generally, advancing resources and devices based on highly specific and superior nanomaterials with unmatched properties dependent on their morphology and diameter. 2D materials such as graphene have unique properties and applications varying from imaging, delivery of drugs, and theranostics of diseases. Each 2D material, ranging from the graphene family, MXenes, chalcogenides, and 2D oxides, have a unique potential based on their shape and morphology. In addition, 2D materials have intriguing physiochemical characteristics, increased aspect ratio and associated increased reactivity that make them an ideal contender in multiple applications. This review aims to answer the existing knowledge gaps in various 2D materials having interdisciplinary roles. We have presented a brief overview of the 2D materials, followed by their synthesis methods and techniques. We have also highlighted the different characterization methods used to characterise various 2D materials. Next, we performed an in-depth analysis of the potential toxicities of 2D materials to assess their risks in multiple applications. Lastly, we conclude our review by presenting the challenges and future perspectives of 2D materials as promising forerunners of science and technology.

摘要

纳米技术是一个探索和创新的领域,主要涉及构建一般的事物,推进基于高度特定和优越纳米材料的资源和设备,这些材料具有无与伦比的特性,取决于其形态和直径。二维材料,如石墨烯,具有独特的性质和应用,从成像、药物输送到疾病的治疗和诊断。每一种二维材料,从石墨烯家族、MXenes、硫属化物和二维氧化物,都具有独特的潜力,这取决于它们的形状和形态。此外,二维材料具有有趣的物理化学特性,增加了纵横比和相关的反应性,使它们成为多种应用的理想竞争者。本综述旨在回答各种具有跨学科作用的二维材料的现有知识差距。我们简要介绍了二维材料,然后介绍了它们的合成方法和技术。我们还强调了用于表征各种二维材料的不同表征方法。接下来,我们对二维材料的潜在毒性进行了深入分析,以评估它们在多种应用中的风险。最后,我们通过介绍二维材料作为科学和技术的有前途的先驱所面临的挑战和未来展望来结束我们的综述。

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