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Original Articles

The Photochemical Conversion of Solar Energy into Electrical Energy: Eosin-D-Xylose System

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Pages 2104-2112 | Received 22 Jun 2009, Accepted 12 Sep 2009, Published online: 22 Sep 2011

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Slavica Prvulovic, Dragisa Tolmac, Marija Matic, Ljiljana Radovanovic & Miroslav Lambic. (2018) Some aspects of the use of solar energy in Serbia. Energy Sources, Part B: Economics, Planning, and Policy 13:4, pages 237-245.
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K.M. Gangotri, P.P. Solanki & M.K. Bhimwal. (2013) Use of Anionic Micelle in Photogalvanic Cells for Solar Energy Conversion and Storage: Sodium Lauryl Sulphate-Mannose-Brilliant Cresyl Blue System. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 35:23, pages 2209-2217.
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K.M. Gangotri, P. Aseri & M.K. Bhimwal. (2013) The Use of Tergitol-7 in Photogalvanic Cells for Solar Energy Conversion and Storage: An EDTA–Azur B System. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 35:4, pages 312-320.
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Articles from other publishers (4)

Amulyacharya Malviya & Prem Prakash Solanki. (2016) Photogalvanics: A sustainable and promising device for solar energy conversion and storage. Renewable and Sustainable Energy Reviews 59, pages 662-691.
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Mukesh Kumar Bhimwal, K. M. Gangotri & Mahesh Kumar Bhimwal. (2013) A comparison of conversion efficiencies of various sugars as reducing agents for the photosensitizer eosin in the photogalvanic cell. International Journal of Energy Research 37:3, pages 250-258.
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Mukesh Kumar Bhimwal & K. M. Gangotri. (2011) Photochemical Conversion of Solar Energy into Electrical Energy in an Eosin–Mannose System. Arabian Journal for Science and Engineering 37:1, pages 19-26.
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K.M. Gangotri & Mahesh Kumar Bhimwal. (2010) Study the performance of photogalvanic cells for solar energy conversion and storage: Rose Bengal–d-Xylose–NaLS system. Solar Energy 84:7, pages 1294-1300.
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