Activation-Assisted High-Concentration Phosphorus-Doping to Enhance the Electrochemical Performance of Cobalt Carbonate Hydroxide Hydrate.

Inorg Chem

College of Electrical Engineering & New Energy and Hubei Provincial Engineering Technology Research Center for Microgrid, China Three Gorges University, Yichang 443002, Hubei, P. R. China.

Published: July 2023

AI Article Synopsis

  • P-doping in metal oxides can improve electrochemical performance by enhancing electronic structures and increasing active reaction sites, but traditional methods often yield low concentrations of P-doping.
  • This study introduces an activation-assisted P-doping strategy that significantly increases P concentration in cobalt carbonate hydroxide hydrate (CCHH), resulting in enhanced conductivity and electrochemical properties.
  • The final CCHH-A-P electrode achieved a capacitance of 6.62 F cm and excellent cycling performance, indicating this method's potential for developing high-performance electrode materials.

Article Abstract

P-doping into metal oxides has been demonstrated as a valid avenue to ameliorate electrochemical performance because it can tune the electronic structures and increase the active sites for an electrochemical reaction. However, it usually results in a low P-doping concentration via the commonly used gas phosphorization method. In this work, an activation-assisted P-doping strategy was explored to significantly raise the P-doping concentration in cobalt carbonate hydroxide hydrate (CCHH). The activation treatment increased active sites for electrochemical reaction and endowed the sample with a high P content in the subsequent gas phosphorization process, thereby greatly enhancing the conductivity of the sample. Therefore, the final CCHH-A-P electrode exhibited a high capacitance of 6.62 F cm at 5 mA cm and good cyclic stability. In addition, the CCHH-A-P//CC ASC with CCHH-A-P as the positive electrode and carbon cloth as the negative electrode provided a high energy density of 0.25 mWh cm at 4 mW cm as well as excellent cycling performance with capacitance retention of 91.2% after 20,000 cycles. Our work shows an effective strategy to acquire Co-based materials with high-concentration P-doping that holds great potential in boosting the electrochemical performance of electrode materials via P-doping technology.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.inorgchem.3c01159DOI Listing

Publication Analysis

Top Keywords

electrochemical performance
12
cobalt carbonate
8
carbonate hydroxide
8
hydroxide hydrate
8
active sites
8
sites electrochemical
8
electrochemical reaction
8
p-doping concentration
8
gas phosphorization
8
p-doping
6

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!