AbstractThe development of nanotechnology in recent decades has brought new opportunities in the exploration of new materials for solving the issues of fossil fuel consumption and environment pollution. Materials with nano-array architecture are emerging as the key due to their structure advantages, which offer the possibility to fabricate high-performance electrochemical electrodes and catalysts for both energy storage and efficient use of energy. The main challenges in this field remain as rational structure design and corresponding controllable synthesis. This article reviews recent progress in our laboratory related to the hydrothermal synthesis of metal oxide and hydroxide nanoarrays, whose structures are designed aiming to the applica...
A Fe2O3@NiO core/shell nanorod array on carbon cloth was prepared with the aid of hydrothermal synth...
Flower-shaped Co3O4 nanorods directly grown on nickel foam(Co3O4/NF) were prepared by one step hydro...
A generic hydrothermal synthesis route has been successfully designed and utilized to in situ grow h...
AbstractThe development of nanotechnology in recent decades has brought new opportunities in the exp...
The high performance of a pseudocapacitor electrode relies largely on a scrupulous design of nanoarc...
Fast, high-yield, and controllable synthesis of functional hydroxide and oxide nanomaterials on cond...
With the advent of the energy crisis and the environmental pollution, the development of clean and r...
The developments and state of the art in the research on two-dimensional nanosheets derived from lay...
Fast, high-yield, and controllable synthesis of functional hydroxide and oxide nanomaterials on cond...
The rational design and controlled synthesis of metal oxide nanostructure arrays with potential appl...
Material synthesis is a constantly evolving area of research and thus recognizing the limitations of...
Supercapacitor (SCs) with excellent power and reasonably high energy densities are becoming a perfec...
Among oxides, Nickel cobaltite (NiCo2O4), with excellent electrochemical performance, has become a n...
In this thesis, transition metal oxide/hydroxide-based functional nanomaterials with specific struct...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
A Fe2O3@NiO core/shell nanorod array on carbon cloth was prepared with the aid of hydrothermal synth...
Flower-shaped Co3O4 nanorods directly grown on nickel foam(Co3O4/NF) were prepared by one step hydro...
A generic hydrothermal synthesis route has been successfully designed and utilized to in situ grow h...
AbstractThe development of nanotechnology in recent decades has brought new opportunities in the exp...
The high performance of a pseudocapacitor electrode relies largely on a scrupulous design of nanoarc...
Fast, high-yield, and controllable synthesis of functional hydroxide and oxide nanomaterials on cond...
With the advent of the energy crisis and the environmental pollution, the development of clean and r...
The developments and state of the art in the research on two-dimensional nanosheets derived from lay...
Fast, high-yield, and controllable synthesis of functional hydroxide and oxide nanomaterials on cond...
The rational design and controlled synthesis of metal oxide nanostructure arrays with potential appl...
Material synthesis is a constantly evolving area of research and thus recognizing the limitations of...
Supercapacitor (SCs) with excellent power and reasonably high energy densities are becoming a perfec...
Among oxides, Nickel cobaltite (NiCo2O4), with excellent electrochemical performance, has become a n...
In this thesis, transition metal oxide/hydroxide-based functional nanomaterials with specific struct...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
A Fe2O3@NiO core/shell nanorod array on carbon cloth was prepared with the aid of hydrothermal synth...
Flower-shaped Co3O4 nanorods directly grown on nickel foam(Co3O4/NF) were prepared by one step hydro...
A generic hydrothermal synthesis route has been successfully designed and utilized to in situ grow h...