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Original Articles

Review of recent work on the bulk photovoltaic effect in ferro and piezoelectrics

Pages 169-187 | Published online: 07 Feb 2011

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Read on this site (4)

G.I. Rosenman, Yu.L. Chepelev & E.I. Boikova. (1989) Asymmetry of photostimulated exoemission in ferroelectrics. Ferroelectrics 100:1, pages 17-27.
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V.I. Belinicher & B.I. Sturman. (1988) The relation between shift and ballistic currents in the theory of photogalvanic effect. Ferroelectrics 83:1, pages 29-34.
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V. N. Novikov & B. I. Sturman. (1987) Hopping model of photogalvanic effect in ferroelectrics. Ferroelectrics 75:1, pages 199-208.
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V. M. Fridkin, V. G. Lazarev, A. L. Shlenski & A. I. Rodin. (1987) The influence of the magnetic field on the circular bulk photovoltaic current in the piezoelectric Bi12GeO20. Ferroelectrics 73:1, pages 379-382.
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Hamna Shaukat, Ahsan Ali, Saira Bibi, Sadia Mehmood, Wael A. Altabey, Mohammad Noori & Sallam A. Kouritem. (2023) Piezoelectric materials: Advanced applications in electro-chemical processes. Energy Reports 9, pages 4306-4324.
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V.G. Shrimali, Keval Gadani, A.D. Joshi, K. Asokan, P.S. Solanki & N.A. Shah. 2023. Metal Oxide Defects. Metal Oxide Defects 161 189 .
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Jabir Zamir Minhas, Md Al Mahadi Hasan & Ya Yang. (2021) Ferroelectric Materials Based Coupled Nanogenerators. Nanoenergy Advances 1:2, pages 131-180.
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Weiqi Qian, Weiyou Yang, Yan Zhang, Chris R. Bowen & Ya Yang. (2020) Piezoelectric Materials for Controlling Electro-Chemical Processes. Nano-Micro Letters 12:1.
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Jaime Frejlich. 2020. Photorefractive Materials for Dynamic Optical Recording. Photorefractive Materials for Dynamic Optical Recording 291 303 .
Yang Bai, Heli Jantunen & Jari Juuti. (2019) Ferroelectric Oxides for Solar Energy Conversion, Multi‐Source Energy Harvesting/Sensing, and Opto‐Ferroelectric Applications. ChemSusChem 12:12, pages 2540-2549.
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Iñigo Bretos, Ricardo Jiménez, Jesús Ricote & M. Lourdes Calzada. 2018. The Future of Semiconductor Oxides in Next-Generation Solar Cells. The Future of Semiconductor Oxides in Next-Generation Solar Cells 45 81 .
Yazi Liu, Shanshan Ding, Jian Xu, Huayang Zhang, Shaogui Yang, Xiaoguang Duan, Hongqi Sun & Shaobin Wang. (2017) Preparation of a p-n heterojunction BiFeO3@TiO2 photocatalyst with a core–shell structure for visible-light photocatalytic degradation. Chinese Journal of Catalysis 38:6, pages 1052-1062.
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Ivan de Oliveira, Danilo Augusto Capovilla, André L. Moura, Varese S. Timóteo, Jesiel F. Carvalho & Jaime Frejlich. (2017) Nonlinear photovoltaic effect in Sillenite photorefractive crystals. Optical Materials 66, pages 72-78.
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Andrew R. Akbashev, Vladimir M. Fridkin & Jonathan E. Spanier. 2016. Nanoscale Ferroelectrics and Multiferroics. Nanoscale Ferroelectrics and Multiferroics 830 850 .
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Yiling Zhang, Paul A. Salvador & Gregory S. Rohrer. 2014. Energy Technology 2014. Energy Technology 2014 15 24 .
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Hila Toporik, Itai Carmeli, Irina Volotsenko, Michel Molotskii, Yossi Rosenwaks, Chanoch Carmeli & Nathan Nelson. (2012) Large Photovoltages Generated by Plant Photosystem I Crystals. Advanced Materials 24:22, pages 2988-2991.
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Li Li, Yiling Zhang, Andrew M. Schultz, Xuan Liu, Paul A. Salvador & Gregory S. Rohrer. (2012) Visible light photochemical activity of heterostructured PbTiO3–TiO2 core–shell particles. Catalysis Science & Technology 2:9, pages 1945.
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Andrew M. Schultz, Yiling Zhang, Paul A. Salvador & Gregory S. Rohrer. (2011) Effect of Crystal and Domain Orientation on the Visible-Light Photochemical Reduction of Ag on BiFeO 3 . ACS Applied Materials & Interfaces 3:5, pages 1562-1567.
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Yiling Zhang, Andrew M. Schultz, Paul A. Salvador & Gregory S. Rohrer. (2011) Spatially selective visible light photocatalytic activity of TiO2/BiFeO3 heterostructures. Journal of Materials Chemistry 21:12, pages 4168.
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Nina V. Burbure, Paul A. Salvador & Gregory S. Rohrer. (2010) Photochemical Reactivity of Titania Films on BaTiO 3 Substrates: Origin of Spatial Selectivity . Chemistry of Materials 22:21, pages 5823-5830.
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Abhilasha Bhardwaj, Nina V. Burbure, Andrew Gamalski & Gregory S. Rohrer. (2010) Composition Dependence of the Photochemical reduction of Ag by Ba 1− x Sr x TiO 3 . Chemistry of Materials 22:11, pages 3527-3534.
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Jennifer L. Giocondi & Gregory S. Rohrer. (2008) The Influence of the Dipolar Field Effect on the Photochemical Reactivity of Sr2Nb2O7 and BaTiO3 Microcrystals. Topics in Catalysis 49:1-2, pages 18-23.
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Nina V. Burbure, Paul A. Salvador & Gregory S. Rohrer. (2006) Influence of Dipolar Fields on the Photochemical Reactivity of Thin Titania Films on BaTiO 3 Substrates . Journal of the American Ceramic Society 89:9, pages 2943-2945.
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