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Trace to the source: self‐tuning of MOF photocatalysts
Z Qian, R Zhang, Y **ao, H Huang… - Advanced Energy …, 2023 - Wiley Online Library
Benefitting from ultra‐high porosity, large specific surface area (SSA), and rich active sites,
metal–organic frameworks (MOFs) have emerged as a star material in energy and …
metal–organic frameworks (MOFs) have emerged as a star material in energy and …
Isoreticular chemistry within metal–organic frameworks for gas storage and separation
W Fan, X Zhang, Z Kang, X Liu, D Sun - Coordination chemistry reviews, 2021 - Elsevier
Precise control of the pore size and environment of metal–organic framework (MOF) is a
necessary condition for achieving high performance of gas adsorption and separation. After …
necessary condition for achieving high performance of gas adsorption and separation. After …
Multilevel-Regulated Metal–Organic Framework Platform Integrating Pore Space Partition and Open-Metal Sites for Enhanced CO2 Photoreduction to CO with Nearly …
HL Zheng, JQ Zhao, YY Sun, AA Zhang… - Journal of the …, 2023 - ACS Publications
Rational design and regulation of atomically precise photocatalysts are essential for
constructing efficient photocatalytic systems tunable at both the atomic and molecular levels …
constructing efficient photocatalytic systems tunable at both the atomic and molecular levels …
Reticular chemistry in the rational synthesis of functional zirconium cluster-based MOFs
In the past two decades, reticular chemistry has developed into a powerful tool for the design
and synthesis of porous, crystalline framework materials. The discovery of the first …
and synthesis of porous, crystalline framework materials. The discovery of the first …
Metal–organic frameworks based on multicarboxylate linkers
When designing metal–organic frameworks (MOFs), linker design is one of the most
important factors in constructing a wide variety of structures. Judicious choice of linker size …
important factors in constructing a wide variety of structures. Judicious choice of linker size …
Reticular Design of Precise Linker Installation into a Zirconium Metal–Organic Framework to Reinforce Hydrolytic Stability
Reticular chemistry allows for the rational assembly of metal–organic frameworks (MOFs)
with designed structures and desirable functionalities for advanced applications. However, it …
with designed structures and desirable functionalities for advanced applications. However, it …
Design and applications of water-stable metal-organic frameworks: status and challenges
Metal-organic frameworks (MOFs) have attracted broad interest of researchers in different
fields thanks to their high crystallinity, tunable porosity and chemical functionality. The …
fields thanks to their high crystallinity, tunable porosity and chemical functionality. The …
Anisotropic reticular chemistry
Reticular chemistry has been focused on making simple structures in which a few kinds of
components are linked to make crystals such as metal–organic frameworks (MOFs). While …
components are linked to make crystals such as metal–organic frameworks (MOFs). While …
[HTML][HTML] Mixed component metal-organic frameworks: Heterogeneity and complexity at the service of application performances
The synthesis of mixed-component metal-organic frameworks (MOFs)–including multivariate
MOFs (MTV-MOFs), multicomponent MOFs, mixed-metals MOFs and mixed-ligands and …
MOFs (MTV-MOFs), multicomponent MOFs, mixed-metals MOFs and mixed-ligands and …
The chemistry of multi-component and hierarchical framework compounds
Multi-component hierarchically porous materials are an emerging class of materials with
tailored compositions, tunable distribution and sophisticated applications. An increasing …
tailored compositions, tunable distribution and sophisticated applications. An increasing …