Tailoring Nano‐Metal–Organic Frameworks and Their Derivatives: From Morphology Engineering to Structural and Functional Optimization

M Mengyao Zhang H Huijie Zhou (School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu 225002 P.R. China) S Shunyu Gu (School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu P. R. China) C Chenfei Zhou (School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu P. R. China) G Gaoli Wang B Bin He (Max Planck Institute for Chemical Physics of Solids) X Xinyu Qin (School of Chemistry and Materials Yangzhou University Yangzhou Jiangsu P. R. China) R Ran Wang H Huan Pang

Abstract

ABSTRACT Rational synthesis of nano‐metal–organic frameworks (nano‐MOFs) and their derivatives is crucial for tailoring structural and functional properties toward meet the demands of advanced energy applications. This review systematically categorizes synthesis strategies into precursor structure engineering and conversion engineering. The former, including solvothermal, modulation, templating methods and etc., enables precise control over morphology, porosity, and surface functionality of primary MOFs. The latter employs transformation pathways like pyrolysis and chemical conversion to produce derivatives with enhanced conductivity, robustness, and hierarchical porosity. By elucidating the underlying mechanisms, this study clarifies the relationship between synthetic control over size, configuration, and composition and key performance metrics (transport efficiency and stability) across key applications including electrocatalysis, batteries, and gas separation. Finally, current challenges and prospective research directions are discussed to guide the development of next‐generation nano‐MOF‐based materials.

Article Details

Volume / Issue Vol. 38, Issue 12
Published February 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (9)

M

Mengyao Zhang

H

Huijie Zhou

School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu 225002 P.R. China

S

Shunyu Gu

School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu P. R. China

C

Chenfei Zhou

School of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu P. R. China

G

Gaoli Wang

B

Bin He

Max Planck Institute for Chemical Physics of Solids

X

Xinyu Qin

School of Chemistry and Materials Yangzhou University Yangzhou Jiangsu P. R. China

R

Ran Wang

H

Huan Pang