Themed collection Most popular 2025 porous materials articles

19 items
Open Access Perspective

MOF surface morphology governs interfacial pore architecture and CO2 dynamics in mixed matrix membranes

Mixed matrix membranes (MMMs), which embed metal–organic frameworks (MOFs) within polymers, offer a promising platform for next-generation, energy-efficient separations.

Graphical abstract: MOF surface morphology governs interfacial pore architecture and CO2 dynamics in mixed matrix membranes
From the themed collection: Most popular 2025 porous materials articles
Open Access Perspective

Structural determination of MCOFs: status, challenges and perspectives

Porous materials have promising characteristics, including tuneable chemical and optical properties, which can be further expanded by their metalation. Yet, structural mapping of metalated covalent organic frameworks is a key challenge to overcome.

Graphical abstract: Structural determination of MCOFs: status, challenges and perspectives
From the themed collection: Most popular 2025 porous materials articles
Open Access Review Article

Recent advances in MOF composites for photocatalysis

Metal–organic framework (MOF) composites have demonstrated great potential for photocatalysis. This review systematically summarizes the classifications, synergistic mechanisms, applications and prospects of MOF composites in photocatalysis.

Graphical abstract: Recent advances in MOF composites for photocatalysis
Open Access Review Article

Pore engineering in metal–organic frameworks and covalent organic frameworks: strategies and applications

This review provides a comprehensive overview of the progress in pore surface engineering of metal–organic frameworks and covalent organic frameworks, highlighting key advancements and their corresponding applications.

Graphical abstract: Pore engineering in metal–organic frameworks and covalent organic frameworks: strategies and applications
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Covalently grafted MOP-on-MOF hybrid ionic-porous composite for efficient adsorption and catalysis

Covalently grafted MOP-on-MOF hybrid crystalline ionic-porous composite for efficient adsorption (selective adsorption of polyiodide species from aqueous phases) and catalysis (Lewis acid mediated phosphate-ester hydrolysis of toxic nerve agents).

Graphical abstract: Covalently grafted MOP-on-MOF hybrid ionic-porous composite for efficient adsorption and catalysis
From the themed collection: 2025 Chemical Science HOT Article Collection
Open Access Edge Article

Topology engineering of COFs via localized 1D–2D unit interconnection to facilitate interfacial electron transfer for efficient gold recovery from e-waste leachates

The establishment of local dimensional interconnectivity creates novel interlayer charge transport channels, which significantly improves electron transport efficiency and achieves highly selective gold recovery.

Graphical abstract: Topology engineering of COFs via localized 1D–2D unit interconnection to facilitate interfacial electron transfer for efficient gold recovery from e-waste leachates
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Tailoring polymer-metal–organic frameworks (polyMOFs) using telechelic poly(octenamer)s

Polymer-metal–organic frameworks (polyMOFs) represent an unusual class of polymer-MOF hybrids. Herein, enhanced methods for designing and tailoring their underlying polymeric building blocks are presented.

Graphical abstract: Tailoring polymer-metal–organic frameworks (polyMOFs) using telechelic poly(octenamer)s
Open Access Edge Article

Enhanced MOF performance in chromium(VI) removal from water using tailored MOF-polymer composites

Functionalizing the internal and external surface of MOFs with polymers allows for tailor-made improvements in their performance for chemical separations.

Graphical abstract: Enhanced MOF performance in chromium(vi) removal from water using tailored MOF-polymer composites
Open Access Edge Article

Regulation of charge carrier transportation in D–π–A type covalent organic frameworks for promoting photocatalytic H2O2 production

The four D–π–A type COFs with different electron-withdrawing units (N-heterocycles) can regulate the transportation of photogenerated charge carriers.

Graphical abstract: Regulation of charge carrier transportation in D–π–A type covalent organic frameworks for promoting photocatalytic H2O2 production
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Intrinsic mechanical properties of two-dimensional covalent organic frameworks

We show that macroscopic principles can predict the nanoscale behavior of 2D covalent organic frameworks and that rigid molecular groups may weaken their overall strength by inducing local strain imbalance.

Graphical abstract: Intrinsic mechanical properties of two-dimensional covalent organic frameworks
Open Access Edge Article

Reversible surface reconstruction of metal–organic frameworks for durable oxygen evolution reaction

Targeted design of reversibly reconfigurable MOF electrocatalysts with high activity and durability remains challenging. Here, the reversible surface reconstruction of Ni-BPM along with its durable OER activity and stability was investigated by in situ characterizations and DFT calculations.

Graphical abstract: Reversible surface reconstruction of metal–organic frameworks for durable oxygen evolution reaction
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

A novel fully conjugated COF adorned on 3D-G to boost the “D–π–A” electron regulation in oxygen catalysis performance

The BI groups in PBIPorCo transfer electrons to the Co–N4 site as a “D–π–A” structure, which enhances the cloud density. The “π–π interactions”.

Graphical abstract: A novel fully conjugated COF adorned on 3D-G to boost the “D–π–A” electron regulation in oxygen catalysis performance
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Reticular chemistry guided function customization: a case study of constructing low-polarity channels for efficient C3H6/C2H4 separation

Guided by the principles of reticular chemistry, we have synthesized a novel function-targeted MOF (ZJNU-401), creating a low-polarity pore surface environment that enhances its efficacy for high uptake of C3H6 and C2H6 over C2H4.

Graphical abstract: Reticular chemistry guided function customization: a case study of constructing low-polarity channels for efficient C3H6/C2H4 separation
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Bipyridine covalent organic framework aerogel for highly selective recovery of palladium in wastewater

A covalent organic framework chitosan aerogel was prepared and demonstrated high efficiency for selective Pd(II) recovery from wastewater.

Graphical abstract: Bipyridine covalent organic framework aerogel for highly selective recovery of palladium in wastewater
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

MOSAEC-DB: a comprehensive database of experimental metal–organic frameworks with verified chemical accuracy suitable for molecular simulations

MOSAEC-DB represents the largest and most diverse dataset of experimental MOFs suitable for simulation and machine learning applications. Novel approaches utilizing metal oxidation states enhance its chemical accuracy relative to past MOF databases.

Graphical abstract: MOSAEC-DB: a comprehensive database of experimental metal–organic frameworks with verified chemical accuracy suitable for molecular simulations
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Thorium metal–organic framework crystallization for efficient recovery from rare earth element mixtures

Selective crystallization of a novel thorium metal–organic framework (NU-2500) enables the efficient separation of Th(IV) from initial mixtures with rare earth(III) ions.

Graphical abstract: Thorium metal–organic framework crystallization for efficient recovery from rare earth element mixtures
From the themed collection: 2025 Chemical Science HOT Article Collection
Open Access Edge Article

Introducing halogen-bonded gates into zeolitic frameworks for efficient benzene/cyclohexene/cyclohexane separation

The introduction of a halogen-bonded gate into a zeolite framework achieved molecular-sieving-like benzene separation from C6 cyclic hydrocarbon mixtures.

Graphical abstract: Introducing halogen-bonded gates into zeolitic frameworks for efficient benzene/cyclohexene/cyclohexane separation
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Copper catalyzed selective methane oxidation to acetic acid using O2

A porous aluminium metal–organic framework confined mono-copper(II) hydroxyl species serves as an efficient catalyst for the direct conversion of methane into acetic acid using O2 as the oxidant in water with excellent productivity and selectivity.

Graphical abstract: Copper catalyzed selective methane oxidation to acetic acid using O2
From the themed collection: Most popular 2025 porous materials articles
Open Access Edge Article

Tuning the interlayer stacking of a vinylene-linked covalent organic framework for enhancing sacrificial agent-free hydrogen peroxide photoproduction

This work reports an efficient strategy to tailor the stacking mode in 2D vinylene-linked covalent triazine frameworks by regulating the base-catalyst with different alkali-metal ions.

Graphical abstract: Tuning the interlayer stacking of a vinylene-linked covalent organic framework for enhancing sacrificial agent-free hydrogen peroxide photoproduction
From the themed collection: 2025 Chemical Science HOT Article Collection
19 items

About this collection

This specially curated collection highlights some of our most popular articles from 2025 in the area of porous materials, including MOFs, COFs and HOFs.

The collection presents some outstanding contributions on separation with zeolites, recovery of precious metals using covalent organic frameworks, MOFs as catalysts, and the latest advances in AI and machine learning for the discovery of new porous materials.

As with all Chemical Science articles, they are all completely free to access and read. We hope you enjoy browsing through this collection!

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