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Photoelectrochemical materials and energy conversion processes [electronic resource]. Photoelectrochemical materials and energy conversion process.
Photoelectrochemical materials and energy conversion processes. Photoelectrochemical Materials and Energy Conversion Processes. All rights reserved.
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Photoelectrochemical Behavior Given that the various PEC attributes are highly dependent on the morphology and composition of the nanohybrid photoelectrodes, two directions were followed to optimize their performance. Figure 5.
Figure 6. Figure 7. Figure 8. Notes The authors declare no competing financial interest. References Roger I. C , , — Energy Environ. Photochemical and Photoelectrochemical Reduction of CO 2. The Electronic Structure of Organic Semiconductors. Photoresponse of a Liquid Junction Polyaniline Film.
Interfacial Electrochem. Photoelectrochemistry and Spectroscopy of Substituted Polyanilines. Acta , 46 , — Energy Mater. Cells , 37 , — Photoelectrochemical Properties of Polyaniline Films. Acta , 34 , — Electrocatalytic Behavior of Polyaniline in the Dark and under Illumination. Acta , 36 , — Cells , 60 , 73— Photoelectrochemical Response in Conducting Polymer Films. Cells , 43 , 79— Science , , — Power Sources , , — Langmuir , 21 , — ChemElectroChem , 3 , — RSC Adv.
Is Graphene a Stable Platform for Photocatalysis?
Alkire Editor , Dieter M. Ross Editor.
Semiconducting materials for photoelectrochemical energy conversion
Dieter M. Kolb has received many prizes and is a member of several societies. His research interests focus on surface analysis and interfacial electrochemistry. He has authored over publications and is a member of several societies, including a Fellow of the International Society of Electrochemistry. Philip N.