A review on the origin of nanofibers/nanorods structures and applications
In this review work, we highlight the origin of morphological structures such as
nanofibers/nanorods in case of various materials in nano as well as bulk form. In addition, a …
nanofibers/nanorods in case of various materials in nano as well as bulk form. In addition, a …
[HTML][HTML] Electrospun Micro/Nanofiber-Based Electrocatalysts for Hydrogen Evolution Reaction: A Review
X Li, Y He, K Li, S Zhang, X Hu, Y Li, D Zhang, Y Liu - Polymers, 2024 - mdpi.com
Hydrogen is regarded as an ideal energy carrier to cope with the energy crisis and
environmental problems due to its high energy density, cleanliness, and renewability …
environmental problems due to its high energy density, cleanliness, and renewability …
[PDF][PDF] Fabrication of N, P-codoped Mo2C/carbon nanofibers via electrospinning as electrocatalyst for hydrogen evolution reaction
P Yang, H Zhao, Y Yang, P Zhao, X Zhao… - ES Materials & …, 2020 - espublisher.com
Stable and efficient noble-metal-free electrocatalysts are imperative substitute of Pt-based
electrocatalysts for hydrogen evolution reaction. In this study, N, P-codoped Mo 2 C/carbon …
electrocatalysts for hydrogen evolution reaction. In this study, N, P-codoped Mo 2 C/carbon …
Size-Dependent Graphene Support for Decorating Gold Nanoparticles as a Catalyst for Hydrogen Evolution Reaction with Machine Learning-Assisted Prediction
Size-dependent two-dimensional (2D) materials (eg, graphene) have been recently used to
improve their performance in various applications such as membrane filtration, energy …
improve their performance in various applications such as membrane filtration, energy …
Engineering the composition and structure of bimetallic Au–Cu alloy nanoparticles in carbon nanofibers: Self-supported electrode materials for electrocatalytic water …
The bimetallic Au–Cu alloy nanoparticles have been constructed in electrospun carbon
nanofibers (Au–Cu/CNFs), employing as high efficient hydrogen evolution reaction (HER) …
nanofibers (Au–Cu/CNFs), employing as high efficient hydrogen evolution reaction (HER) …
Taming transition metals on N-doped CNTs by a one-pot method for efficient oxygen reduction reaction
Y Gao, L Wang, G Li, Z **ao, Q Wang… - International Journal of …, 2018 - Elsevier
Various transition metals have been incorporated into nitrogen-doped carbon nanotubes
(MNC/CNT, M= Fe, Co, Mn, and Ni) via a one-pot method using dopamine as nitrogen …
(MNC/CNT, M= Fe, Co, Mn, and Ni) via a one-pot method using dopamine as nitrogen …
Engineering ordered dendrite-like nickel selenide as electrocatalyst
Surface modification of nanostructured catalysts is fundamental in accelerating sluggish
oxygen evolution reaction (OER). Herein we demonstrate that nanostructured Nickel …
oxygen evolution reaction (OER). Herein we demonstrate that nanostructured Nickel …
[HTML][HTML] Laser-assisted synthesis of Au NPs on MgO/chitosan: Applications in electrochemical hydrogen storage
Hydrogen with high energy density is an environmental alternative to fossil fuels which can
respond to the demand for energy considering environmental conditions. It can be stored on …
respond to the demand for energy considering environmental conditions. It can be stored on …
Flexible gold nanoparticles/rGO and thin film/rGO papers: novel electrocatalysts for hydrogen evolution reaction
BACKGROUND Fabrication of cost‐effective and durable materials for efficient hydrogen
production in splitting water (hydrogen evolution reaction) is of importance for the successful …
production in splitting water (hydrogen evolution reaction) is of importance for the successful …
Electron transfer enhanced catalytic activity of nitrogen doped reduced graphene oxide supported CuCo2O4 towards the fast reduction of 4-nitrophenol in water
There has been a growing interest in the design and development of graphene based
composite materials with superior performances for environmental catalytic applications. But …
composite materials with superior performances for environmental catalytic applications. But …