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Emerging transition metal and carbon nanomaterial hybrids as electrocatalysts for water splitting: a brief review
Electrocatalytic water splitting has appeared to be a sustainable green technology for
hydrogen and oxygen production, and noble metal-based electrocatalysts, like Pt for …
hydrogen and oxygen production, and noble metal-based electrocatalysts, like Pt for …
Atomically dispersed ternary FeCoNb active sites anchored on N-doped honeycomb-like mesoporous carbon for highly catalytic degradation of 4-nitrophenol
ZF Jiang, FM Tian, KM Fang, ZG Wang, L Zhang… - Journal of Colloid and …, 2025 - Elsevier
In the last decades, 4-nitrophenol is regarded as one of highly toxic organic pollutants in
industrial wastewater, which attracts great concern to earth sustainability. Herein, atomically …
industrial wastewater, which attracts great concern to earth sustainability. Herein, atomically …
MXene composite with Ni/Co sulfide for enhanced hydrogen evolution reaction
To produce clean and green hydrogen energy from electrolytic water, better electrocatalytic
materials need to be developed. Herein, we reported the development of a Ti3C2 MXene …
materials need to be developed. Herein, we reported the development of a Ti3C2 MXene …
Do** matters in carbon nanomaterial efficiency in environmental remediation
Carbon nanomaterials (CNMs) are rapidly emerging in materials science research due to
their widespread environmental applications. They are useful for environmental pollutants' …
their widespread environmental applications. They are useful for environmental pollutants' …
Enhanced electrocatalytic efficiencies for water electrolysis and para-nitrophenol hydrogenation by self-supported nickel cobalt phosphide-nickel iron layered double …
J Chang, F Song, F Xu, D Wu, Y Hou, K Jiang… - Journal of Colloid and …, 2024 - Elsevier
Charge redistribution across heterointerfaces is an important tactic to enhance the catalytic
activities and bifunctionality of hybrid catalysts, especially for green hydrogen production …
activities and bifunctionality of hybrid catalysts, especially for green hydrogen production …
Nanoarchitectonics Pt/NiCo in a carbon matrix as highly efficient electrocatalyst for hydrogen evolution reaction
Alkaline electrocatalysts for hydrogen evolution reaction (HER) are important for
applications requiring long lifetime and strong catalytic activity. We have successfully …
applications requiring long lifetime and strong catalytic activity. We have successfully …
Al-based MOF-derived amorphous/crystalline heterophase cobalt sulfides as high-performance supercapacitor materials
M Liao, K Zhang, C Luo, H Zeng - Inorganic Chemistry, 2024 - ACS Publications
Transition metal sulfides (TMSs) are promising electrode materials due to their high
theoretical specific capacitance, but sluggish charge transfer kinetics and an insufficient …
theoretical specific capacitance, but sluggish charge transfer kinetics and an insufficient …
Cobalt nanoparticles embedded in porous N-doped carbon support as a superior catalyst for the p-nitrophenol reduction
VV Butova, VA Polyakov, EA Erofeeva… - Applied Surface …, 2022 - Elsevier
We report the synthesis of a new effective cobalt-based composite for catalytic reduction of
water pollutant-p-nitrophenol. ZIF-67 and its Zn-substituted analog have been used as …
water pollutant-p-nitrophenol. ZIF-67 and its Zn-substituted analog have been used as …
Nanoarchitectonic Ni-doped edge dislocation defect-rich MoS2 boosting catalytic activity in electrochemical hydrogen production
The world is moving towards a more sustainable future, and hydrogen is emerging as a key
player in this transition. Hydrogen production through the use of electrocatalysts is becoming …
player in this transition. Hydrogen production through the use of electrocatalysts is becoming …
Nanoarchitectonic manganese-cobalt phosphide through zeolitic–imidazolate framework for efficient electrocatalysis in hydrogen evolution reaction
Nanostructured materials with unique structural properties have attracted the interest of
researchers, because these materials are rich in active sites, offer enhanced ion transport …
researchers, because these materials are rich in active sites, offer enhanced ion transport …