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A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides.

Publication ,  Journal Article
Zhou, C; Oh, J; Stone, ML; Richardson, S; Chung, P-H; Osio-Norgaard, J; Nhan, BT; Kumar, A; Chi, M; Cargnello, M
Published in: Advanced materials (Deerfield Beach, Fla.)
December 2024

Encapsulation of metal nanoparticles within oxide materials has been shown as an effective strategy to improve activity, selectivity, and stability in several catalytic applications. Several approaches have been proposed to encapsulate nanoparticles, such as forming core-shell structures, growing ordered structures (zeolites or metal-organic frameworks) on nanoparticles, or directly depositing support materials on nanoparticles. Here, a general nanocasting method is demonstrated that can produce diverse encapsulated metal@oxide structures with different compositions (Pt, Pd, Rh) and multiple types of oxides (Al2O3, Al2O3-CeO2, ZrO2, ZnZrOx, In2O3, Mn2O3, TiO2) while controlling the size and dispersion of nanoparticles and the porous structure of the oxide. Metal@polymer structures are first prepared, and then the oxide precursor is infiltrated into such structures and the resulting material is calcined to form the metal@oxide structures. Most Pt@oxides catalysts show similar catalytic activity, demonstrating the availability of surface Pt sites in the encapsulated structures. However, the Pt@Mn2O3 sample showed much higher CO oxidation activity, while also being stable under aging conditions. This work demonstrated a robust nanocasting method to synthesize metal@oxide structures, which can be utilized in catalysis to finely tune metal-oxide interfaces.

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Published In

Advanced materials (Deerfield Beach, Fla.)

DOI

EISSN

1521-4095

ISSN

0935-9648

Publication Date

December 2024

Volume

36

Issue

50

Start / End Page

e2409710

Related Subject Headings

  • Nanoscience & Nanotechnology
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences
 

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Zhou, C., Oh, J., Stone, M. L., Richardson, S., Chung, P.-H., Osio-Norgaard, J., … Cargnello, M. (2024). A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides. Advanced Materials (Deerfield Beach, Fla.), 36(50), e2409710. https://doi.org/10.1002/adma.202409710
Zhou, Chengshuang, Jinwon Oh, Michael L. Stone, Sydney Richardson, Pin-Hung Chung, Jorge Osio-Norgaard, Bang T. Nhan, Abinash Kumar, Miaofang Chi, and Matteo Cargnello. “A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides.Advanced Materials (Deerfield Beach, Fla.) 36, no. 50 (December 2024): e2409710. https://doi.org/10.1002/adma.202409710.
Zhou C, Oh J, Stone ML, Richardson S, Chung P-H, Osio-Norgaard J, et al. A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides. Advanced materials (Deerfield Beach, Fla). 2024 Dec;36(50):e2409710.
Zhou, Chengshuang, et al. “A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides.Advanced Materials (Deerfield Beach, Fla.), vol. 36, no. 50, Dec. 2024, p. e2409710. Epmc, doi:10.1002/adma.202409710.
Zhou C, Oh J, Stone ML, Richardson S, Chung P-H, Osio-Norgaard J, Nhan BT, Kumar A, Chi M, Cargnello M. A General Approach for Metal Nanoparticle Encapsulation Within Porous Oxides. Advanced materials (Deerfield Beach, Fla). 2024 Dec;36(50):e2409710.
Journal cover image

Published In

Advanced materials (Deerfield Beach, Fla.)

DOI

EISSN

1521-4095

ISSN

0935-9648

Publication Date

December 2024

Volume

36

Issue

50

Start / End Page

e2409710

Related Subject Headings

  • Nanoscience & Nanotechnology
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences