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碳量子点的最新发展:光催化、生物成像和生物传感应用。

State-of-the-art developments in carbon quantum dots (CQDs): Photo-catalysis, bio-imaging, and bio-sensing applications.

机构信息

Department of Chemical Engineering Technology, College of Applied Industrial Technology (CAIT), Jazan University, Jazan, 45971, Saudi Arabia.

School of Chemical Engineering, Yeungnam University, Gyeongsan-si, Gyeongbuk, 38541, South Korea.

出版信息

Chemosphere. 2022 Sep;302:134815. doi: 10.1016/j.chemosphere.2022.134815. Epub 2022 May 5.

Abstract

Carbon quantum dots (CQDs), the intensifying nanostructured form of carbon material, have exhibited incredible impetus in several research fields such as bio-imaging, bio-sensing, drug delivery systems, optoelectronics, photovoltaics, and photocatalysis, thanks to their exceptional properties. The CQDs show extensive photonic and electronic properties, as well as their light-collecting, tunable photoluminescence, remarkable up-converted photoluminescence, and photo-induced transfer of electrons were widely studied. These properties have great advantages in a variety of visible-light-induced catalytic applications for the purpose of fully utilizing the energy from the solar spectrum. The major purpose of this review is to validate current improvements in the fabrication of CQDs, characteristics, and visible-light-induced catalytic applications, with a focus on CQDs multiple functions in photo-redox processes. We also examine the problems and future directions of CQD-based nanostructured materials in this growing research field, with an eye toward establishing a decisive role for CQDs in photocatalysis, bio-imaging, and bio-sensing applications that are enormously effective and stable over time. In the end, a look forward to future developments is presented, with a view to overcoming challenges and encouraging further research into this promising field.

摘要

碳量子点(CQDs)是碳材料的强化纳米结构形式,由于其独特的性质,在生物成像、生物传感、药物传递系统、光电、光伏和光催化等多个研究领域表现出了令人难以置信的推动力。CQDs 具有广泛的光子和电子特性,以及其收集光线、可调谐光致发光、显著上转换光致发光和光诱导电子转移等特性,受到了广泛的研究。这些特性在各种可见光诱导催化应用中具有很大的优势,目的是充分利用太阳光谱中的能量。本综述的主要目的是验证 CQDs 的制造、特性和可见光诱导催化应用方面的最新进展,重点是 CQDs 在光氧化还原过程中的多种功能。我们还研究了在这个不断发展的研究领域中,基于 CQD 的纳米结构材料所面临的问题和未来方向,以期确立 CQDs 在光催化、生物成像和生物传感应用中的决定性作用,这些应用在时间上具有极高的有效性和稳定性。最后,对未来的发展进行了展望,以期克服挑战并鼓励对这一充满前景的领域进行进一步研究。

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