4.8 Review

Advances in the Interfacial Assembly of Mesoporous Silica on Magnetite Particles

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 59, Issue 37, Pages 15804-15817

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201911690

Keywords

core-shell structures; interfaces; magnetic nanoparticles; mesoporous materials; silica

Funding

  1. NSF of China [21701153, 21673048, 21875044]
  2. Key Basic Research Program of the Science and Technology Commission of Shanghai Municipality [17JC1400100]
  3. National Key RAMP
  4. D Program of China [2018YFA0209401]
  5. Program of Shanghai Academic Research Leaders [19XD1420300]
  6. State Key Laboratory of Transducer Technology of China [SKT1904]
  7. Youth Top-Notch Talent Support Program of China

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Interfacing magnetic particles with ordered mesoporous materials is an effective direction for the development of functional porous composite materials with rationally designed core-shell structures. Owing to the combined properties of magnetic nanoparticles and mesoporous silica (high surface area, large pore volume, porosity, and biocompatibility), core-shell magnetic mesoporous silica materials have generated tremendous interest in various disciplines, including chemistry, materials, bioengineering, and biomedicine. Interfacial assembly strategies enable the rational construction of magnetic mesoporous silica materials with well-defined core-shell structure, morphology, pore parameters, and surface wettability, which can decisively influence their physical and chemical properties and thus improve their application performance. This Minireview summarizes recent progress in the synthesis of core-shell magnetic mesoporous silica and the adjustment of key parameters, including pore size, morphology, and pore orientation.

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