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Pt-decorated SnO2 nanotubes prepared directly on a conducting substrate and their application in solar energy conversion using a solid polymer electrolyte
Applied Surface Science
◽
10.1016/j.apsusc.2018.04.161
◽
2018
◽
Vol 450
◽
pp. 9-20
◽
Cited By ~ 3
Author(s):
Jin Kyu Kim
◽
Dong Jun Kim
◽
Chang Soo Lee
◽
Hyung Hee Cho
◽
Jong Hak Kim
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Polymer Electrolyte
◽
Solid Polymer Electrolyte
◽
Solar Energy Conversion
◽
Solid Polymer
◽
Conducting Substrate
Download Full-text
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References
Polymer-electrolyte-based photoelectrochemical solar energy conversion with poly(3-methylthiophene) photoactive electrode
Synthetic Metals
◽
10.1016/s0379-6779(96)03792-7
◽
1996
◽
Vol 82
(3)
◽
pp. 215-220
◽
Cited By ~ 39
Author(s):
Teketel Yohannes
◽
Theodros Solomon
◽
O. Inganäs
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Polymer Electrolyte
◽
Solar Energy Conversion
Download Full-text
ADVANCES IN HIGH-TEMPERATURE SOLAR ENERGY CONVERSION
Proceeding of Proceedings of CHT-17 ICHMT International Symposium on Advances in Computational Heat Transfer May 28-June 1, 2017, Napoli, Italy
◽
10.1615/ichmt.2017.cht-7.180
◽
2017
◽
Author(s):
Wojciech Lipinski
Keyword(s):
High Temperature
◽
Solar Energy
◽
Energy Conversion
◽
Solar Energy Conversion
Download Full-text
Introduction into applied renewable thermodynamics for direct solar energy conversion systems
10.2514/6.2000-2862
◽
2000
◽
Author(s):
Anatoly Sukhodolsky
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Solar Energy Conversion
◽
Energy Conversion Systems
Download Full-text
The impact of chemical and physical structure on charge pair generation and solar energy conversion in molecular photovoltaic materials
10.29363/nanoge.hopv.2018.190
◽
2018
◽
Author(s):
Jenny Nelson
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Solar Energy Conversion
◽
Physical Structure
◽
Photovoltaic Materials
◽
Pair Generation
◽
The Impact
Download Full-text
Faculty Opinions recommendation of Does greater leaf-level photosynthesis explain the larger solar energy conversion efficiency of Miscanthus relative to switchgrass?
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.14267175.15779350
◽
2012
◽
Author(s):
Chris Somerville
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Conversion Efficiency
◽
Solar Energy Conversion
◽
Energy Conversion Efficiency
◽
Leaf Level
◽
Solar Energy Conversion Efficiency
Download Full-text
Ambient Temperature Solid Polymer Electrolyte Devices
10.21236/ada228716
◽
1990
◽
Author(s):
P. S. Prasad
◽
M. Z. Munshi
◽
B. B. Owens
◽
W. H. Smyri
Keyword(s):
Ambient Temperature
◽
Polymer Electrolyte
◽
Solid Polymer Electrolyte
◽
Solid Polymer
Download Full-text
Selective Coatings for Extraterrestrial Solar Energy Conversion: A Fundamental Analysis
10.21236/ada451848
◽
1960
◽
Author(s):
Robert M. Van Vliet
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Solar Energy Conversion
◽
Fundamental Analysis
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Nanoplasmonic for Solar Energy Conversion Devices
Solar Cells
◽
10.5772/intechopen.84953
◽
2020
◽
Author(s):
Samy K.K. Shaat
◽
Hussam Musleh
◽
Jihad Asad
◽
Nabil Shurrab
◽
Ahmed Issa
◽
...
Keyword(s):
Solar Energy
◽
Energy Conversion
◽
Solar Energy Conversion
◽
Energy Conversion Devices
Download Full-text
Correction to “Surface Grafting of Ru(II) Diazonium-Based Sensitizers on Metal Oxides Enhances Alkaline Stability for Solar Energy Conversion”
ACS Applied Materials & Interfaces
◽
10.1021/acsami.0c20634
◽
2021
◽
Author(s):
Rachel Bangle
◽
Renato N. Sampaio
◽
Ludovic Troian-Gautier
◽
Gerald J. Meyer
Keyword(s):
Solar Energy
◽
Metal Oxides
◽
Energy Conversion
◽
Solar Energy Conversion
◽
Surface Grafting
◽
Alkaline Stability
Download Full-text
An amperometric solid-state sensor for Nitrogen dioxide based on a solid polymer electrolyte
Electroanalysis
◽
10.1002/elan.1140040202
◽
1992
◽
Vol 4
(2)
◽
pp. 133-138
◽
Cited By ~ 27
Author(s):
František Opekar
Keyword(s):
Solid State
◽
Nitrogen Dioxide
◽
Polymer Electrolyte
◽
Solid Polymer Electrolyte
◽
Solid Polymer
◽
Solid State Sensor
Download Full-text
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