Organosilica-assisted superhydrophilic oxygen doped graphitic carbon nitride for improved photocatalytic H2 evolution
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference46 articles.
1. Low-carbon path of geographically matched hybrid energy utilization: a coal-to-ethylene glycol process with hydrogen from the coupled wind/solar power;Shi;ACS Sustainable Chem Eng,2021
2. Perspective on the hydrogen economy as a pathway to reach net-zero CO2 emissions in Europe;Van der Spek;Energy Environ Sci,2022
3. Light-assisted synthesis of Au/TiO2 nanoparticles for H2 production by photocatalytic water splitting;Kunthakudee;Int J Hydrogen Energy,2022
4. Interfacial charge separation of nickel phosphide anchored on anatase-hematite heterojunction for stimulating visible light driven hydrogen generation;Bhagya;Int J Hydrogen Energy,2022
5. Photocatalytic solar hydrogen production from water on a 100 m2 scale;Nishiyama;Nature,2021
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