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Two-Dimensional Silicene/Silicon Nanosheets: An Emerging Silicon-Composed Nanostructure in Biomedicine

期刊

ADVANCED MATERIALS
卷 33, 期 31, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202008226

关键词

nanosheet; silicene; silicon; silicon‐ composed nanomedicine; two‐ dimensional

资金

  1. National Key R&D Program of China [2016YFA0203700]
  2. National Natural Science Foundation of China [51672303]
  3. Excellent Young Scientist Foundation of NSFC [51722211]
  4. Program of Shanghai Subject Chief Scientist [18XD1404300]

向作者/读者索取更多资源

Silicon-composed 2D silicene/silicon nanosheets with unique planar nanostructure, large surface area, and abundant surface chemistry are emerging for versatile biomedical applications, including tumor theranostics and antibacterial treatments. These nanosheets exhibit desirable photothermal-conversion performance and good biodegradability and biocompatibility, making them promising for clinical translations in the future.
Silicon-composed nanomedicines are one of the most representative inorganic nanosystems in theranostic biomedicine. The emerging of new family members of silicon-composed nanosystems substantially contributes to their further clinical translation. 2D silicene/silicon nanosheets have recently been developed as an emerging topology of silicon-composed nanoparticles, which features unique planar nanostructure with large surface area, abundant surface chemistry, specific physiochemical property, and desirable biological effects. This progress report highlights and discusses the state-of-art developments of the elaborate construction of 2D silicene/silicon nanosheets for versatile biomedical applications, including top-down fabrication, multifunctionalization, surface engineering, and their available biomedical applications in tumor theranostics (e.g., bioimaging, photothermal ablation, chemotherapy, chemoreactive nanotherapy, radiotherapy, and synergistic nanotherapy) and antibacteria. Their large surface area originating from 2D nanostructure not only enables efficient loading and delivery of chemotherapeutic drugs, but also guarantees the multifunctionalization. Especially, 2D silicene/silicon nanosheets harness desirable photothermal-conversion performance for photonic hyperthermia and photoacoustic imaging in the near infrared biowindow, accompanied with the desirable biodegradability and biocompatibility, which is typically not possessed in other silicon-composed counterparts. The multivariate analysis on the facing challenges and future developments of these 2D silicene/silicon nanosheets have also been conducted and outlooked for further underpinning their clinical translations.

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