Javascript must be enabled to continue!
Post‐modified Strategies of Graphdiyne for Electrochemical Applications
View through CrossRef
AbstractThe new carbon material graphdiyne (GDY) has been verified to have a great application prospect in electrochemical field. In order to study its properties and expand its scope of application, various experiments including structural control tests are imposed on GDY. Among them, as one of the most commonly used methods to modify the structure, heteroatom doping is favored for its advantages in synthesis methods and the control of mechanical, electrical and even magnetic properties of carbon materials. According to the published studies, the top‐down methods of doping heteroatoms for GDY only need cheap raw materials, simple synthetic route and strong controllability, which is conducive to rapid performance breakthroughs in electrochemical applications. This review selects the typical cases in the development of that post‐modification method from the application of GDY in the electrochemical field. Here, based on the existed reports, the commonly used non‐metal elements (such as nitrogen, sulfur) and metal elements (such as iron) have been introduced to post‐modify GDY. Then, a detailed analysis is made for corresponding electrochemical applications, such as energy storage and electrocatalysis. Finally, the challenges and prospects of post‐modified GDY in synthesis and electrochemical applications are proposed. This review provides us a useful guidance for the development of high‐quality GDY suitable for electrochemical applications.
Title: Post‐modified Strategies of Graphdiyne for Electrochemical Applications
Description:
AbstractThe new carbon material graphdiyne (GDY) has been verified to have a great application prospect in electrochemical field.
In order to study its properties and expand its scope of application, various experiments including structural control tests are imposed on GDY.
Among them, as one of the most commonly used methods to modify the structure, heteroatom doping is favored for its advantages in synthesis methods and the control of mechanical, electrical and even magnetic properties of carbon materials.
According to the published studies, the top‐down methods of doping heteroatoms for GDY only need cheap raw materials, simple synthetic route and strong controllability, which is conducive to rapid performance breakthroughs in electrochemical applications.
This review selects the typical cases in the development of that post‐modification method from the application of GDY in the electrochemical field.
Here, based on the existed reports, the commonly used non‐metal elements (such as nitrogen, sulfur) and metal elements (such as iron) have been introduced to post‐modify GDY.
Then, a detailed analysis is made for corresponding electrochemical applications, such as energy storage and electrocatalysis.
Finally, the challenges and prospects of post‐modified GDY in synthesis and electrochemical applications are proposed.
This review provides us a useful guidance for the development of high‐quality GDY suitable for electrochemical applications.
Related Results
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED]Keanu Reeves CBD Gummies ==❱❱ Huge Discounts:[HURRY UP ] Absolute Keanu Reeves CBD Gummies (Available)Order Online Only!! ❰❰= https://www.facebook.com/Keanu-Reeves-CBD-G...
Electrochemical Sensing Behavior of Graphdiyne Nanoflake Toward Uric Acid; A Quantum Chemical Approach
Electrochemical Sensing Behavior of Graphdiyne Nanoflake Toward Uric Acid; A Quantum Chemical Approach
Abstract
Though, the gas sensing applications of graphdiyne have widely reported; however, the biosensing utility of graphdiyne needs to be explored. This study deals with ...
Electrochemical Noise of Electrophoretic Coatings with Nanoparticles TiO2 and ZnO
Electrochemical Noise of Electrophoretic Coatings with Nanoparticles TiO2 and ZnO
INTRODUCTION
Organic coatings based on nanotechnology have been of great interest in recent years, thanks to the increase in performance with signifi...
Book 2. POWER CONTROL FOR AN ELECTRICALLY POWERED WATER TREATMENT APPARATUS
Book 2. POWER CONTROL FOR AN ELECTRICALLY POWERED WATER TREATMENT APPARATUS
Detailed Description of How the Power Control of the Present Invention Synchronizes the Power Supply to a W2W Electrochemical Reactor The overall, general fundamental "patentable" ...
Local Electrochemical Impedance Spectroscopy: Towards an Improvement in the Low Frequency Domain
Local Electrochemical Impedance Spectroscopy: Towards an Improvement in the Low Frequency Domain
The ability to probe surface reactivity at the local scale has led to a new understanding of the electrochemical reactivity in relation to the surface microstructure. Among the var...
Molecularly Modified Diamond Electrodes
Molecularly Modified Diamond Electrodes
Molecular modification of the electrode surface is an important technique in various fields ranging from analytical chemistry to molecular electronics. For example, in the field of...
Molecular dynamics study on the structure and properties of silicon-graphdiyne
Molecular dynamics study on the structure and properties of silicon-graphdiyne
A study to shed light on the existence of silicon-graphdiyne as well as their stability, structural and other properties, has been carried out using an efficient semi-empirical Ham...
Interrogation of Anodic Stripping Voltammetry Peaks of Metals for the Determination of Electrochemical Reaction Parameters
Interrogation of Anodic Stripping Voltammetry Peaks of Metals for the Determination of Electrochemical Reaction Parameters
The aim of this study was to develop a method for the analysis of peaks obtained during anodic stripping voltammetry (ASV) at silver-based mercury film electrodes (SBMFE) in the pr...

