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Photonic light trapping in self-organized all-oxide microspheroids impacts photoelectrochemical water splitting
SNSF| Self-organization processes to pattern thin films: A bottom-up approach for photoelectrodes ,
SNSF| Fundamental Aspects of Photocatalysis and Photoelectrochemistry / Basic Research Instrumentation for Functional Characterization ,
SNSF| Reaction-diffusion processes for the growth of patterned structures and architectures: A bottom-up approach for photoelectrochemical electrodes
Authors: Florent Boudoire; Florent Boudoire; Jakob Heier; Artur Braun; Edwin C. Constable; Rita Toth;
doi: 10.1039/c4ee00380b
Photonic light trapping in self-organized all-oxide microspheroids impacts photoelectrochemical water splitting
Abstract
A SEM picture of the microspheroids (tilted), scheme depicting the vesicle templated sol–gel process and squared normalized electric field intensity distribution inside the microspheroid calculated by finite-difference time-domain simulation.
Country
Switzerland
Related Organizations
- Swiss Federal Laboratories for Materials Science and Technology Switzerland
- University of Basel Switzerland

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SNSF| Self-organization processes to pattern thin films: A bottom-up approach for photoelectrodes, SNSF| Fundamental Aspects of Photocatalysis and Photoelectrochemistry / Basic Research Instrumentation for Functional Characterization, SNSF| Reaction-diffusion processes for the growth of patterned structures and architectures: A bottom-up approach for photoelectrochemical electrodes
Related to Research communities
Energy Research