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Janus nanoarchitectures: From structural design to catalytic applications

Journal

NANO TODAY
Volume 22, Issue -, Pages 62-82

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.nantod.2018.08.009

Keywords

Janus composites; Nanostructures; Micro/nano motors; Interfacial catalysis; Photocatalytic reaction

Funding

  1. National Natural Science Foundation of China [51702046, 51702091, 51772050, 51822202]
  2. Innovation Program of Shanghai Municipal Education Commission [2017-01-07-00-03-E00025]
  3. Shanghai Committee of Science and Technology, China [17ZR1401000, 18JC1411200, 16JC1401800]
  4. Shanghai Pujiang Program [17PJ1400100]
  5. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University
  6. Australian Research Council (ARC) Discovery Early Career Researcher Award (DECRA) project [DE150100280]
  7. ARC Future Fellowship project [FT160100281]
  8. ARC Discovery Project [DP160102627]
  9. QUT Postgraduate Research Award (QUTPRA) Scholarship by Queensland University of Technology (QUT)

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Janus nanoarchitectures, an emerging class of nanostructures named after the Roman god having two faces, have been considered as a fascinating class of nanomaterials for promising applications in various areas, such as optical imaging, emulsion stabilizers, catalysis, drug delivery, etc. The asymmetric structures or counterparts of Janus nanostructures provide access to construct a single unit with multifunctional properties, and thus allow the design of nanocomposites with a possible synergistic effect, especially for catalytic reactions. In the last decade, Janus nanomaterials have been successfully applied in the field of catalysis, by providing solutions to some complex situations, such as biphasic reactions, catalysts recovery, self-propelled movements, and biocompatible catalysis. In this review, we intend to highlight the recent progress of Janus nanoarchitectures for the growing field of catalytic applications. Herein, the fabrication and catalytic applications of Janus nanoarchitectures are critically reviewed in terms of three categories of compositions, i.e., polymeric, inorganic, and polymeric/inorganic Janus nanostructures. Specifically, typical applications of Janus nanoarchitectures in micro/nano motors, interfacial catalysis, and photocatalytic reactions are summarized and discussed. An outlook of the future applications and possible further study of Janus nanomaterials is also provided. (C) 2018 Elsevier Ltd. All rights reserved.

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