Quinn, Joseph, Hemmerling, John, and Linic, Suljo. Maximizing Solar Water Splitting Performance by Nanoscopic Control of the Charge Carrier Fluxes across Semiconductor–Electrocatalyst Junctions. Retrieved from https://par.nsf.gov/biblio/10074101. ACS Catalysis . Web. doi:10.1021/acscatal.8b01929.
Quinn, Joseph, Hemmerling, John, & Linic, Suljo. Maximizing Solar Water Splitting Performance by Nanoscopic Control of the Charge Carrier Fluxes across Semiconductor–Electrocatalyst Junctions. ACS Catalysis, (). Retrieved from https://par.nsf.gov/biblio/10074101. https://doi.org/10.1021/acscatal.8b01929
Quinn, Joseph, Hemmerling, John, and Linic, Suljo.
"Maximizing Solar Water Splitting Performance by Nanoscopic Control of the Charge Carrier Fluxes across Semiconductor–Electrocatalyst Junctions". ACS Catalysis (). Country unknown/Code not available. https://doi.org/10.1021/acscatal.8b01929.https://par.nsf.gov/biblio/10074101.
@article{osti_10074101,
place = {Country unknown/Code not available},
title = {Maximizing Solar Water Splitting Performance by Nanoscopic Control of the Charge Carrier Fluxes across Semiconductor–Electrocatalyst Junctions},
url = {https://par.nsf.gov/biblio/10074101},
DOI = {10.1021/acscatal.8b01929},
abstractNote = {},
journal = {ACS Catalysis},
author = {Quinn, Joseph and Hemmerling, John and Linic, Suljo},
}
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