OA Carrasco-Jaim
Photocatalytic hydrogen production by biomimetic indium sulfide using Mimosa pudica leaves as template
Carrasco-Jaim, OA; Ahumada-Lazo, R; Clark, PCJ; Gómez-Solis, C; Fairclough, SM; Haigh, SJ; Leontiadou, M; Handrup, K; Torres-Martinez, LM; Flavell, WR
Authors
R Ahumada-Lazo
PCJ Clark
C Gómez-Solis
SM Fairclough
SJ Haigh
Dr Marina Leontiadou M.Leontiadou@salford.ac.uk
Associate Professor/Reader
K Handrup
LM Torres-Martinez
WR Flavell
Abstract
Biomimetic sulfur-deficient indium sulfide (In2.77S4) was synthesized by a template-assisted hydrothermal method using leaves of Mimosa pudica as a template for the first time. The effect of this template in modifying the morphology of the semiconductor particles was determined by physicochemical characterization, revealing an increase in surface area, decrease in microsphere size and pore size and an increase in pore volume density in samples synthesized with the template. X-ray photoelectron spectroscopy (XPS) analysis showed the presence of organic sulfur (S O/S C/S H) and sulfur oxide species ( SO2, SO32−, SO42−) at the surface of the indium sulfide in samples synthesized with the template. Biomimetic indium sulfide also showed significant amounts of Fe introduced as a contaminant present on the Mimosa pudica leaves. The presence of these sulfur and iron species favors the photocatalytic activity for hydrogen production by their acting as a sacrificial reagent and promoting water oxidation on the surface of the templated particles, respectively. The photocatalytic hydrogen production rates over optimally-prepared biomimetic indium sulfide and indium sulfide synthesized without the organic template were 73 and 22 μmol g−1, respectively, indicating an improvement by a factor of three in the templated sample.
Journal Article Type | Article |
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Acceptance Date | Dec 5, 2018 |
Online Publication Date | Jan 5, 2019 |
Publication Date | Jan 28, 2019 |
Deposit Date | Apr 2, 2019 |
Publicly Available Date | Apr 2, 2019 |
Journal | International Journal of Hydrogen Energy |
Print ISSN | 0360-3199 |
Publisher | Elsevier |
Volume | 44 |
Issue | 5 |
Pages | 2770-2783 |
DOI | https://doi.org/10.1016/j.ijhydene.2018.12.043 |
Publisher URL | https://doi.org/10.1016/j.ijhydene.2018.12.043 |
Related Public URLs | https://www.sciencedirect.com/journal/international-journal-of-hydrogen-energy/vol/44/issue/5 |
Additional Information | Funders : Engineering and Physical Sciences Research Council (EPSRC);CONACYT;SEP;FIC-UANL;European Community's Seventh Framework Programme Projects : Enhanced multiple exciton generation in colloidal quantum dots;PROFOCIE-2014-19-MSU0011T-18;Integración de Redes Temáticas 2015-CA-244;PAIFIC-2015;FP7/2007–2013 Grant Number: EP/K008544/1 Grant Number: CB-237049 Grant Number: CB-256645 Grant Number: 226716 |
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Licence
http://creativecommons.org/licenses/by/4.0/
Publisher Licence URL
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