| Literature DB >> 27845439 |
Rajashekar Badam1, Raman Vedarajan1, Kazuki Okaya2, Koichi Matsutani2, Noriyoshi Matsumi1.
Abstract
Electrocatalytic materials for oxygen reduction reaction, currently dominated by platinum/carbon catalyst is marred by drawbacks such as use of copious amount of Pt and use of "non-green" sacrificial reducing agent (SRA) during its synthesis. A single stroke remedy for these two problems has been achieved through an in-situ aqueous photoreduction void of even trace amounts of SRA with an enhanced activity. Reduction of PtCl62- salt to Pt nano particles on carbon substrate was achieved solely using solar spectrum as the source of energy and TiO2 as photocatalyst. Here, we demonstrate that this new procedure of photoreduction, decorates Pt over different types of conducting allotropes with the distribution and the particle size primarily depending on the conductivity of the allotrope. The Pt/C/TiO2 composite unveiled an ORR activity on par to the most efficient Pt based electrocatalyst prepared through the conventional sacrificial reducing agent aided preparation methods.Entities:
Year: 2016 PMID: 27845439 PMCID: PMC5109473 DOI: 10.1038/srep37006
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Morphology.
TEM micrographs of Photo-Pt-graphite-TiO2 (A,B) Photo-Pt-CNT-TiO2 (C,D).
Figure 2Chemical composition of Pt: Shows high resolution XPS spectra of Pt4f. of Photo-Pt-Graphite-TiO2 and Photo-Pt-CNT-TiO2.
Figure 3ORR characteristics of electrocatalysts.
(A) CV of Photo-Pt-Graphite-TiO2 and Photo-Pt-CNT-TiO2 in N2 saturated 0.1 M HClO4 aq. at scan rate of 50 mVs−1. (B) ECSA calculated from the CVs and comparison with commercial material. (C) RDE linear sweep voltammograms for all the samples under study and (D) Mass activity and Specific activity obtained from K-L plots at 0.90 V vs RHE.
Figure 4Bar-graph showing limiting current and normalized IL with mass fraction.