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Core-Shell Structured Micro-Nanomotors: Construction, Shell Functionalization, Applications, and Perspectives

期刊

SMALL
卷 18, 期 3, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202102887

关键词

core-shell structures; enhanced applications; micro; nanomotors; multifunctionality; shell functionalization; synergistic effects

资金

  1. National Key Research and Development Program of China [2019YFC1604600, 2017YFA0206901, 2017YFA0206900]
  2. National Natural Science Foundation of China [21705027, 21974029, 81830052]
  3. Construction Project of Shanghai Key Laboratory of Molecular Imaging [18DZ2260400]
  4. Shanghai Municipal Education Commission (Class II Plateau Disciplinary Construction Program of Medical Technology of SUMHS, 2018-2020)

向作者/读者索取更多资源

The integration of well-designed micro-nanomotors with diverse functional systems offers opportunities for diverse functionalization interfaces and augmented or new properties in a wide variety of applications. Core-shell structured MNM systems play an important role in applications, providing improved propulsion performance, stability, non-toxicity, multi-functionality, and dispersibility, with the potential for enhanced or new physiochemical properties through hetero-interfaces within the structure.
The successful integration of well-designed micro-nanomotors (MNMs) with diverse functional systems, such as, living systems, remote actuation systems, intelligent sensors, and sensing systems, offers many opportunities to not only endow them with diverse functionalization interfaces but also bring augmented or new properties in a wide variety of applications. Core-shell structured MNM systems have been considered to play an important role in a wide range of applications as they provide a platform to integrate multiple complementary components via decoration, encapsulation, or functionalization into a single functional system, being able to protect the active species from harsh environments, and bring improved propulsion performance, stability, non-toxicity, multi-functionality, and dispersibility, etc., which are not easily available from the isolated components. More importantly, the hetero-interfaces between individual components within a core-shell structure might give rise to boosted or new physiochemical properties. This review will bring together these key aspects of the core-shell structured MNMs, ranging from advanced protocols, enhanced/novel functionalities arising from diverse functional shells, to integrated core-shell structured MNMs for diverse applications. Finally, current challenges and future perspectives for the development of core-shell structured MNMs are discussed in term of synthesis, functions, propulsions, and applications.

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