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February 14, 2026Angewandte Chemie International Edition0 citations

Multivariate Hierarchies in Metal–Organic Frameworks

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YWYang WangZZZ ZhangBNBen Niu

Key Points

  • This research aims to achieve hierarchical structures in metal-organic frameworks, enhancing efficiency and functionality.
  • Developed a nanoemulsion-based post-synthetic strategy
  • Created single crystal metal-organic frameworks
  • Controlled both pore architecture and chemical compositions simultaneously
  • Achieved sequentially ordered hierarchical pores (micropores to macropores)
  • Created distinct functional layers for enhanced performance
  • Improved charge transfer efficiency and reaction kinetics
  • Introduced multi-element hierarchical pores and cross-linked hierarchical pores options

Abstract

ABSTRACT Hierarchy is one of the fundamental laws that governs nature, where ordered structures—from plant roots to human skin—optimize mass and energy flow through precisely hierarchical pores and chemical compositions. Mimicking this intricate design in artificial materials has remained elusive, as achieving simultaneous, precisely control over both pore architecture and chemical composition hierarchies within a single system posed great challenges. In this work, by developing a facile nanoemulsion‐based post‐synthetic strategy, we break this barrier and achieve multivariate hierarchies in metal–organic frameworks (MOF) single crystal, enabling the first creation of MOF with simultaneously sequentially ordered hierarchical pores (micropores→mesopores→macropores) and hierarchical chemical compositions (distinct functional layers). This true biomimicry showcase promoted charge transfer efficiency and accelerated reaction kinetics which are similar to the natural systems. In addition, novel multivariate hierarchies like “multi‐element hierarchical pores” for multifunctionality and “cross‐linked hierarchical pores” for pore structural hybridization can be also created, transcending traditional material limits. By mirroring nature's hierarchical genius at the nano world, this work establishes a paradigm for the next‐generation bio‐inspired materials with life‐like efficiency and complexity.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/699011932ccff479cfe58529https://doi.org/10.1002/anie.8973821
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