Guo, P. Diao, D. Xu, S. Huang, Y. Yang, T. Jin, Q. Wu, M. Xiang, M. Zhang, International Journal of Hydrogen Energy, 39, 2014, 7686.
De Jongh, D. Vanmaekelbergh, J.J. Kelly, Journal of the Electrochemical Society, 147, 2000, 486.
D. Khiavi, R. Katal, S.K. Eshkalak, S. Masudy-Panah, S. Ramakrishna, H. Jiangyong, Nanomaterials, 9, 2019, 1011.
Siripala, A. Ivanovskaya, T.F. Jaramillo, E.W. McFarland, Solar Energy Materials and Solar Cells, 77, 2003, 229.
Hu, J. Nian, H. Teng, Solar Energy Materials and Solar Cells, 92, 2008, 1071.
Nian, C. Hu, H. Teng, International Journal of Hydrogen Energy, 33, 2008, 2897.
Barreca, P. Fornasiero, A. Gasparotto, V. Gombac, C. Maccato, T. Montini, E. Tondello, Chem Sus Chem, 2, 2009, 230.
Hilaire, M.J. Suess, N. Kranzlin, K. Bienkowski, M. Niederberger, Journal of Materials Chemistry A, 48, 2014, 20530.
W. Bohannan, L. Huang, F.S. Miller, M.G. Shumsky, J.A. Switzer, Langmuir, 15, 1999, 813.
E. de Jongh, D. Vanmaekelbergh, J.J. Kelly, Journal of the Electrochemical Society, 147, 2000, 486.
A. Switzer, B.M. Maune, E.R. Raub, E.W. Bohannan, The Journal of Physical Chemistry B, 103, 1999, 395.
Kim, S. Yoon, H. Jung, K.J. Lee, D.C. Lim, I.S. Kim, B. Yoo, J.H. Lim, Japanese Journal of Applied Physics, 53, 2014, 80.
L. Sculfort, D. Guyomard, M. Herlem, Electrochimica Acta, 29, 1984, 459.
Lin, G. Yuan, S. Sheehan, S. Zhou, D. Wang, Energy and Environmental Science, 4, 2011, 4862.
Hara, T. Kondo, M. Komoda, S. Ikeda, K. Shinohara, A. Tanaka, J.N. Kondo, K. Domen, Chemical Communications, 3, 1998, 357.
Gou, C.J. Murphy, Nano Letters, 3, 2003, 231.
Wang, G. Wang, X. Wang, Y. Zhan, Y. Liu, C. Zheng, Advanced Materials, 14, 2002, 67.
Ho-Kimura, Acs sus Che and engineering, 3, 2015, 710.
Jiang, Nanoscale Research Letters, 9, 2014, 219.
Taneja, R. Chandra, R. Banerjee, P. Ayyub, Scripta Materialia, 44, 2001, 1915.
Figueiredo, E. Elangovan, G. Goncalves, P. Barquinha, L. Pereira, N. Franco, E. Alves, R. Martins, E. Fortunato, Applied Surface Science, 254, 2008, 3949.
S. Hong, Y. Cao, J.F. Deng, Materials Letters, 52, 2002, 34.
Jamali, S., & Moshaii, A. (2020). Investigating the Effective Parameters in Synthesization of Cu2O structures for Photoelectrochemical Water Splitting Application. , 12(42), 61-67.
MLA
S. Jamali; A. Moshaii. "Investigating the Effective Parameters in Synthesization of Cu2O structures for Photoelectrochemical Water Splitting Application". , 12, 42, 2020, 61-67.
HARVARD
Jamali, S., Moshaii, A. (2020). 'Investigating the Effective Parameters in Synthesization of Cu2O structures for Photoelectrochemical Water Splitting Application', , 12(42), pp. 61-67.
VANCOUVER
Jamali, S., Moshaii, A. Investigating the Effective Parameters in Synthesization of Cu2O structures for Photoelectrochemical Water Splitting Application. , 2020; 12(42): 61-67.