| Literature DB >> 29579405 |
Samuel J Cobb1,2, Zoe J Ayres1, Julie V Macpherson1,2.
Abstract
Boron doped diamond (BDD) is continuing to find numerous electrochemical applications across a diverse range of fields due to its unique properties, such as having a wide solvent window, low capacitance, and reduced resistance to fouling and mechanical robustness. In this review, we showcase the latest developments in the BDD electrochemical field. These are driven by a greater understanding of the relationship between material (surface) properties, required electrochemical performance, and improvements in synthetic growth/fabrication procedures, including material postprocessing. This has resulted in the production of BDD structures with the required function and geometry for the application of interest, making BDD a truly designer material. Current research areas range from in vivo bioelectrochemistry and neuronal/retinal stimulation to improved electroanalysis, advanced oxidation processes, supercapacitors, and the development of hybrid electrochemical-spectroscopic- and temperature-based technology aimed at enhancing electrochemical performance and understanding.Entities:
Keywords: advanced oxidation; boron doped diamond; electroanalysis; electrochemistry; fabrication; neurochemistry
Year: 2018 PMID: 29579405 DOI: 10.1146/annurev-anchem-061417-010107
Source DB: PubMed Journal: Annu Rev Anal Chem (Palo Alto Calif) ISSN: 1936-1327 Impact factor: 10.745