Exploring the multifunctionality of carbon dots: Advances in synthesis, properties, and applications

IF 3.1 4区 物理与天体物理 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Current Applied Physics Pub Date : 2025-03-01 Epub Date: 2025-01-04 DOI:10.1016/j.cap.2025.01.003
Soumya Pandit , Nishant Ranjan , Rajan Verma , Kuldeep Sharma , Richa Tomar , Firdaus Mohamad Hamzah
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Abstract

Owing to their small size, and unique physical and chemical properties, zero-dimensional carbon nanomaterials, carbon dots (CDs) have been increasingly critically analyzed for their potential applications in the fields of biology, chemistry, food science, and energy. This study systematically explores the multifunctional capabilities of CDs, emphasizing recent advancements in their synthesis techniques, precise characterization methods, and their tailored applications across interdisciplinary domains. The applications of CDs, which are generally smaller than 10 nm, in myriad fields are ascribed to their intrinsic merits of good biocompatibility, little cytotoxicity, good stability, and large specific surface area. The development of CDs along with their accurate characterization, and their successful implementation into faster, less expensive, and more reliable systems in a variety of scientific fields are testimony to how science has advanced and merged to create interdisciplinary fields. Despite extensive research, there is still the need to overcome the problem of large-scale production and improve quantum yield as well as functionality for specific applications, which this study seeks to analyze. Thus, a new era in nanotechnology has begun with the advancement in the exploration of CDs for applications in new and emerging scientific fields. CDs exhibit a huge number of distinctive physiochemical, photophysical, and photochemical properties which makes them a suitable platform for applications related to imaging, environmental remediation, catalysis, biology, and energy. The present research, therefore, focuses on the function and importance of CDs, as well as their synthesis, properties, and new developments in several fields of application.

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探索碳点的多功能性:合成、性质和应用的进展
由于其体积小,独特的物理和化学性质,零维碳纳米材料,碳点(cd)在生物,化学,食品科学和能源领域的潜在应用越来越受到严格的分析。本研究系统地探讨了CDs的多功能功能,强调了它们在合成技术、精确表征方法和跨跨学科领域的定制应用方面的最新进展。通常小于10nm的CDs具有良好的生物相容性、较小的细胞毒性、良好的稳定性和较大的比表面积等优点,在许多领域得到了广泛的应用。cd的发展及其准确的特性,以及它们在各种科学领域中更快、更便宜和更可靠的系统中的成功实施,证明了科学是如何进步和融合以创造跨学科领域的。尽管进行了广泛的研究,但仍然需要克服大规模生产的问题,提高量子产率以及特定应用的功能,这是本研究试图分析的。因此,随着纳米技术在新兴科学领域的应用探索的进步,纳米技术的新时代已经开始。cd表现出大量独特的物理、光物理和光化学性质,这使它们成为成像、环境修复、催化、生物和能源等领域应用的合适平台。因此,目前的研究重点是cd的功能和重要性,以及它们的合成、性质和在几个应用领域的新进展。
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来源期刊
Current Applied Physics
Current Applied Physics 物理-材料科学:综合
CiteScore
4.80
自引率
0.00%
发文量
213
审稿时长
33 days
期刊介绍: Current Applied Physics (Curr. Appl. Phys.) is a monthly published international journal covering all the fields of applied science investigating the physics of the advanced materials for future applications. Other areas covered: Experimental and theoretical aspects of advanced materials and devices dealing with synthesis or structural chemistry, physical and electronic properties, photonics, engineering applications, and uniquely pertinent measurement or analytical techniques. Current Applied Physics, published since 2001, covers physics, chemistry and materials science, including bio-materials, with their engineering aspects. It is a truly interdisciplinary journal opening a forum for scientists of all related fields, a unique point of the journal discriminating it from other worldwide and/or Pacific Rim applied physics journals. Regular research papers, letters and review articles with contents meeting the scope of the journal will be considered for publication after peer review. The Journal is owned by the Korean Physical Society.
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