Versatile synthesis of dendritic mesoporous rare earth–based nanoparticles

Author:

Yu Hongyue1ORCID,Wang Wenxing1ORCID,Liu Minchao1ORCID,Zhao Tiancong1ORCID,Lin Runfeng1,Hou Mengmeng1ORCID,Kou Yufang1ORCID,Chen Liang1ORCID,Elzatahry Ahmed A.2ORCID,Zhang Fan1ORCID,Zhao Dongyuan1ORCID,Li Xiaomin1ORCID

Affiliation:

1. Department of Chemistry, State Key Laboratory of Molecular Engineering of Polymers, iChem, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, Shanghai 200433, China.

2. Materials Science and Technology Program, College of Arts and Sciences, Qatar University, P.O. Box 2713, Doha, Qatar.

Abstract

Rare earth–based nanomaterials that have abundant optical, magnetic, and catalytic characteristics have many applications. The controllable introduction of mesoporous channels can further enhance its performance, such as exposing more active sites of rare earth and improving the loading capacity, yet remains a challenge. Here, we report a universal viscosity-mediated assembly strategy and successfully endowed rare earth–based nanoparticles with central divergent dendritic mesopores. More than 40 kinds of dendritic mesoporous rare earth–based (DM-REX) nanoparticles with desired composition (single or multiple rare earth elements, high-entropy compounds, etc.), particle diameter (80 to 500 nanometers), pore size (3 to 20 nanometers), phase (amorphous hydroxides, crystalline oxides, and fluorides), and architecture were synthesized. Theoretically, a DM-REX nanoparticle library with 393,213 kinds of possible combinations can be constructed on the basis of this versatile method, which provides a very broad platform for the application of rare earth–based nanomaterials with rational designed functions and structures.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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