Controllable Strategy of Metal–Organic Framework Structural Stability: Regulation of Ligand Electronegativity by Esterification DOI Creative Commons
Guanjie Huang, Jianzhong Ma, Jie Chen

et al.

Advanced Science, Journal Year: 2024, Volume and Issue: unknown

Published: Dec. 5, 2024

Abstract Structural stability of metal–organic framework (MOF) is crucial for their application, and thus it great significance to construct MOFs with controllable structural stability. Herein, a strategy based on adjusting the electronic environment ligands regulate structure MOF proposed. Briefly, novel Zr‐MOF (Zr‐TA) hydroxyl groups synthesized. The are esterified obtain ester stronger electronegativity, which can weaken strength coordination between metal ion ligand, thereby regulating Zr‐MOF. Notably, this achieve adjustment by adding modifiers at appropriate time. In work, used greatly improving binding ability collagen fibers, hydrothermal crosslinked fibers enhanced 82.6%. Surprisingly, also be applied other application fields that require dynamic changes in MOF. It will open up new pathway controlling performance

Language: Английский

Magnetic COF/MOF hybrid: An efficient Z-scheme photocatalyst for the visible light-assisted degradation of tetracycline and malachite green DOI

Bahareh Rabeie,

Niyaz Mohammad Mahmoodi, Abdollah Dargahi

et al.

Journal of Molecular Liquids, Journal Year: 2025, Volume and Issue: 421, P. 126869 - 126869

Published: Jan. 10, 2025

Language: Английский

Citations

8

Optimizing Fe in Mn-based Prussian blue analogs with dual redox-active sites to enhance operating voltage and durability in Zn-ion batteries DOI
Hao Fu, Xianpeng Wang,

Lingqian Ye

et al.

Chemical Engineering Journal, Journal Year: 2025, Volume and Issue: 506, P. 160308 - 160308

Published: Jan. 1, 2025

Language: Английский

Citations

6

Failure Mechanisms and Strategies for Vanadium Oxide‐Based Cathode in Aqueous Zinc Batteries DOI Open Access

Rohit Kumar Sinha,

Xuesong Xie, Yang Yang

et al.

Advanced Energy Materials, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 7, 2025

Abstract With the increasing safety concerns and consensus on sustainability, aqueous zinc‐ion batteries (AZIBs) are gaining significant attention as a green efficient alternative for energy storage technologies. However, prolonged persistent chemical dissolution electrochemical capacity fading of one dominant vanadium oxide cathodes has long posed an unavoidable challenge. Meanwhile, mechanism AZIBs remains controversial, along with formation parasitic derived cathode‐related products during repeated charge/discharge procedure. Herein, this review expects to provide comprehensive analysis fundamental redox reactions in oxide‐based AZIBs, particular emphasis nanostructure features their evolution, ionic transference, occupation, elucidate underlying mechanisms involved system. Furthermore, several effective strategies, including cathode modification electrolyte design summarized. Finally, offers potential avenues advancing materials, inorganic colloids, high‐entropy electrolytes, characterization, thereby contributing continued development field.

Language: Английский

Citations

4

MOFs@COFs Composites: Advances, Challenges, and Multifunctional Applications in Emerging Technologies DOI Creative Commons

Khalil Ahmad,

Muhammad Mateen Afzal Awan,

Muhammad Kashif

et al.

Hybrid Advances, Journal Year: 2025, Volume and Issue: unknown, P. 100419 - 100419

Published: Feb. 1, 2025

Language: Английский

Citations

3

Advances in aqueous zinc-ion battery systems: Cathode materials and chemistry DOI

Yun Fan,

Qingping Wang,

Yingying Xie

et al.

Progress in Materials Science, Journal Year: 2024, Volume and Issue: unknown, P. 101393 - 101393

Published: Oct. 1, 2024

Language: Английский

Citations

11

Capacity compensation via redox transition enables MnVBO4 to be a long-life cathode for aqueous zinc-ion batteries DOI
Minghui Huang, Quan Kuang,

Jixiang Wei

et al.

Journal of Power Sources, Journal Year: 2025, Volume and Issue: 631, P. 236184 - 236184

Published: Jan. 13, 2025

Language: Английский

Citations

1

Vanadium-doped Prussian blue analogues as advanced cathode for sodium-ion batteries DOI
Wei Xu, Yanjiao Li, Peng Bao

et al.

Journal of Electroanalytical Chemistry, Journal Year: 2025, Volume and Issue: unknown, P. 119027 - 119027

Published: Feb. 1, 2025

Language: Английский

Citations

1

MOF-based electrode materials for aqueous zinc-ion batteries: design strategy and future challenges DOI
Yingying Wang,

Tao Pan,

Sicong Zhang

et al.

Inorganic Chemistry Frontiers, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

Summary of MOF-based aqueous zinc-ion battery electrode materials design strategies.

Language: Английский

Citations

0

Fundamentals, Advances and Perspectives in Designing Eutectic Electrolytes for Zinc-Ion Secondary Batteries DOI
Mengya Wang,

Zuojie Xu,

Chaowei He

et al.

ACS Nano, Journal Year: 2025, Volume and Issue: unknown

Published: March 6, 2025

Zinc-ion secondary batteries have been competitive candidates since the "post-lithium-ion" era for grid-scale energy storage, owing to their plausible security, high theoretical capacity, plentiful resources, and environment friendliness. However, many encumbrances like notorious parasitic reactions Zn dendrite growth hinder development of zinc-ion remarkably. Faced with these challenges, eutectic electrolytes aroused notable attention by virtue feasible synthesis tunability. This review discusses definition advanced functionalities in detail divides them into nonaqueous, aqueous, solid-state regard state component electrolytes. In particular, corresponding chemistry concerning solvation structure regulation, electric double layer (EDL) structure, solid-electrolyte interface (SEI) charge/ion transport mechanism is systematically elucidated a deeper understanding Moreover, remaining limitations further are discussed electrolyte design extended applications.

Language: Английский

Citations

0

Research Progress of Non‐Noble Metal‐Based Self‐Supporting Electrode for Hydrogen Evolution Reaction at High Current Density DOI Open Access

Xiaoqian Shi,

Wenjing Gu,

Bin Zhang

et al.

Advanced Functional Materials, Journal Year: 2025, Volume and Issue: unknown

Published: March 5, 2025

Abstract Electrocatalytic water splitting has emerged as a key method for large‐scale production of green hydrogen. Constructing efficient, durable, and low‐cost electrocatalysts the hydrogen evolution reaction at high current densities is prerequisite practical industrial applications splitting. Recently, non‐noble metal‐based self‐supporting electrodes have been explored density due to their cost‐effective, conductivity metal substrate, robust interfacial binding between catalyst strong mechanical stability. In this review, recently reported (Ni, Fe, Cu, Co, Ti, Mo, alloy) electrode applied are comprehensively summarized, classified, discussed. Five fundamental design principles such intrinsic activity, abundant active sites, fast electron transfer, mass transport, stability proposed discussed achieve high‐performance under densities. Furthermore, various modification strategies including heteroatom doping, morphology engineering, interface phase strain engineering enhance catalytic activity durability electrode. Finally, challenges prospects designing efficient stable in future This comprehensive overview will provide valuable insight guidance development production.

Language: Английский

Citations

0