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Iron series metal-organic frameworks and their composite nanomaterials: Controllable synthesis and clean energy applications
D Ji, H Yang, Q Zhang, H Ding, S Zhang, G Zhang… - Nano Energy, 2024 - Elsevier
Abstract Iron series (Fe, Co, Ni) metal-organic framework materials (MOFs) have
characteristics of adjustable structure, and high specific surface area. Their potential for …
characteristics of adjustable structure, and high specific surface area. Their potential for …
Metal organic framework derived materials: progress and prospects for the energy conversion and storage
Exploring new materials with high efficiency and durability is the major requirement in the
field of sustainable energy conversion and storage systems. Numerous techniques have …
field of sustainable energy conversion and storage systems. Numerous techniques have …
Advancements in the development of nanomaterials for lithium-ion batteries: A scientometric review
E Poorshakoor, M Darab - Journal of Energy Storage, 2024 - Elsevier
Lithium-ion batteries (LIBs) have potential to revolutionize energy storage if technical issues
like capacity loss, material stability, safety and cost can be properly resolved. The recent use …
like capacity loss, material stability, safety and cost can be properly resolved. The recent use …
Progress of nanostructured metal oxides derived from metal–organic frameworks as anode materials for lithium–ion batteries
RCK Reddy, J Lin, Y Chen, C Zeng, X Lin, Y Cai… - Coordination Chemistry …, 2020 - Elsevier
Metal–organic frameworks (MOFs) are the newly crystalline porous materials with
outstanding structural, compositional, and morphological features, which have garnered …
outstanding structural, compositional, and morphological features, which have garnered …
Harnessing the potential of MOF-derived metal oxide composites to optimize energy efficiency in batteries and supercapacitors
Over the last twenty years, a significant focus has been on metal-organic frameworks
(MOFs), which belong to a family of porous materials. These materials are being studied as …
(MOFs), which belong to a family of porous materials. These materials are being studied as …
3D spongy CoS2 nanoparticles/carbon composite as high-performance anode material for lithium/sodium ion batteries
A spongy CoS 2/carbon composite assembled from CoS 2 nanoparticles (∼ 20 nm)
homogeneously anchored on a spongy carbon matrix was synthesized through a facile …
homogeneously anchored on a spongy carbon matrix was synthesized through a facile …
Flake-like MoS2 nano-architecture and its nanocomposite with reduced Graphene Oxide for hybrid supercapacitors applications
In this article, we have synthesized flake-like MoS 2 nanoarchitecture by urea assisted
hydrothermal method. To improve the electrical and electrochemical properties of MoS 2 …
hydrothermal method. To improve the electrical and electrochemical properties of MoS 2 …
[HTML][HTML] Sb incorporated into oxides enhances stability in acid during the oxygen evolution reaction by inhibiting structural distortion
Abstract Development of first-row transition-metal-based catalysts for oxygen evolution is a
desirable goal due to the low cost and abundance of transition metals, relative to iridium …
desirable goal due to the low cost and abundance of transition metals, relative to iridium …
Mesoporous Co3O4/SnO2 Nanostructure-Based Heterojunctions for NO2 Sensors
Over a decade, the application of p–n heterojunction-based sensing garnered tremendous
interest in the domain of gas sensors. This interest is mainly attributed to the exceptional …
interest in the domain of gas sensors. This interest is mainly attributed to the exceptional …
Cobalt single atoms immobilized N-doped carbon nanotubes for enhanced bifunctional catalysis toward oxygen reduction and oxygen evolution reactions
Novel Co atoms immobilized carbon nanotubes (CoSAs@ CNTs) are synthesized by
structural engineering of the zeolitic imidazolate framework (ZIF-67) upon treatment with …
structural engineering of the zeolitic imidazolate framework (ZIF-67) upon treatment with …