[1]
B. K. Kim, V. Chabot, A. Yu: Electrochimica Acta Vol. 109 (2013), p.370.
Google Scholar
[2]
C. Yuan, L. Hou, Y. Feng, S. Xiong, X. Zhang: Electrochimica Acta Vol. 88(2013), p.507.
Google Scholar
[3]
M. Liu, J. Chang, J. Sun, L. Gao: Electrochimica Acta Vol. 107 (2013), p.9.
Google Scholar
[4]
J. Fang, Y. F. Yuan, L.K. Wang, H.L. Ni, H.L. Zhu, J.S. Gui, J.L. Yang, Y.B. Chen, S.Y. Guo: Materials Letters Vol. 111(2013), p.1.
Google Scholar
[5]
L. Hu, B. Qu, L. Chen, Q. Li: Materials Letters Vol. 108(2013), p.92.
Google Scholar
[6]
F. Tian and Y. Liu: Scripta Materialia Vol. 69 (2013), p.417.
Google Scholar
[7]
S. A. El-Safty, M. Khairy, M. Ismael, H. Kawarad: Applied Catalysis B: Environmental Vol. 123– 124(2012), p.162.
Google Scholar
[8]
G. Bai, H. Dai, J. Deng, Y. Liu, K. Ji : Catalysis Communications Vol. 27 (2012), p.148.
Google Scholar
[9]
Q. Dong, S. Yin, C. Guo, X. Wu, N. Kumad, T. Takei, A. Miura, Y. Yonesaki, T. Sato: Applied Catalysis B: Environmental Vol. 147 (2014), p.741.
DOI: 10.1016/j.apcatb.2013.10.007
Google Scholar
[10]
P. Zhang, X. Ma, Y. Guo, Q. Cheng, L. Yang: Chemical Engineering Journal Vol. 189– 190 (2012), p.188.
Google Scholar
[11]
R. Wang, Q. Li, D. Xie, H. Xiao, H. Lu: Applied Surface Science Vol. 279 (2013), p.129.
Google Scholar
[12]
L. T. Hoa, H. N. Tien, V. H. Luan, J. S. Chung, S. H. Hur: Sensors and Actuators B Vol. 185 (2013), p.701.
Google Scholar
[13]
H. Kim, K. Choi, K. Kim, C. W. Na, J. Lee: Sensors and Actuators B Vol. 171– 172 (2012), p.1029.
Google Scholar
[14]
L. Lin, T. Liu, Y. Zhang, S. Hussain, S. Wu, W. Zeng: Materials Letters Vol. 108(2013), p.231.
Google Scholar
[15]
W. Lv, F. Jin, Q. Guo, Q. Yang, F. Kang: Electrochimica Acta Vol. 73 (2012), p.129.
Google Scholar
[16]
R. A. Patil, R. S. Devan, J. Lin, Y. Ma, P. S. Patil, Y. Liou: Solar Energy Materials & Solar Cells Vol. 112 (2013), p.91.
DOI: 10.1016/j.solmat.2013.01.003
Google Scholar
[17]
D. S. Dalavi, R. S. Devan, R. S. Patil, Y. Ma, P. S. Patil: Materials Letters Vol. 90 (2013), p.60.
Google Scholar
[18]
H. Moulki, C. Faure, M. Mihelčič, A. Šurca Vuk, F. Švegl, B. Orel, G. Campet, M. Alfredsson, A.V. Chadwick, D. Gianolio, A. Rougier: Thin Solid Films Vol. 553 (2014), p.63.
DOI: 10.1016/j.tsf.2013.10.154
Google Scholar
[19]
H. Wang, C. Wang, Y. Sun, Y. Cao: Chemical Engineering Journal Vol. 209 (2012), p.442.
Google Scholar
[20]
S. Moghe, A.D. Acharya, Richa Panda, S.B. Shrivastava, Mohan Gangrade, T. Shripathi, V. Ganesan: Renewable Energy Vol. 46 (2012), p.43.
DOI: 10.1016/j.renene.2012.02.028
Google Scholar
[21]
V.I. Sokolov, A.V. Druzhinin, G.A. Kim, N.B. Gruzdev, A. Ye. Yermakov, M.A. Uimin, I.V. Byzov, N.N. Shchegoleva, V.B. Vykhodets, T.E. Kurennykh: Physica B Vol. 430(2013), p.1.
DOI: 10.1016/j.physb.2013.07.033
Google Scholar
[22]
L. Ai, Y. Zeng: Chemical Engineering Journal Vol. 215–216 (2013), p.269.
Google Scholar
[23]
H. B. Kim, H. Kim, H. S. Sohn, I. Son, H. S. Lee: Materials Letters Vol. 101(2013), p.65.
Google Scholar
[24]
S.R. Nalage, S.T. Navale, V.B. Patil: Measurement Vol. 46 (2013), p.3268.
Google Scholar
[25]
K. K. Purushothaman, I. M. Babu, B. Sethuraman, and G. Muralidharan: ACS Appl. Mater. Interfaces Vol. 5(2013), p.10767.
DOI: 10.1021/am402869p
Google Scholar
[26]
A. K. Mondal, D. Su, Y. Wang, S. Chen, and G. Wang: Chem. Asian J. Vol. 8(2013), p.2828.
Google Scholar
[27]
J. Nai , S. Wang , Y. Bai , and L. Guo: small Vol. 9(2013), p.3147.
Google Scholar
[28]
R. Nosrati, A. Olad, Roya Maramifar : Environ Sci Pollut Res Vol. 19(2012), p.2291.
Google Scholar
[29]
V. Eskizeybek, F. Sar, H. Gülce, A. Gülce, A. Avc : Applied Catalysis B: Environmental Vol. 119– 120 (2012), p.197.
Google Scholar
[30]
A. Olad, R. Nosrati: Res Chem Intermed Vol. 38(2012), p.323.
Google Scholar
[31]
K. Pandiselvi, S. Thambidurai: Colloids and Surfaces B: Biointerfaces Vol. 108 (2013), p.229.
Google Scholar
[32]
Q. Tang, L. Lin, Z. Mao and J. Wu: RSC Advances Vol. 2 (2012), p.1863.
Google Scholar
[33]
Q. Tang, L. Lin, X. Zhao, K. Huang, and J. Wu: Langmuir Vol. 28(2012), p.3972.
Google Scholar
[34]
S. E. Mavundla, G. F. Malgas, D. E. Motaung, and E. I. Iwuoha: Cryst. Res. Technol. Vol. 47( 2012), p.553.
Google Scholar
[35]
S. Zhu, W. Wei, X. Chen, M. Jiang, Z. Zhou: Journal of Solid State Chemistry Vol. 190 (2012), p.174.
Google Scholar
[36]
C. Liu, K. Hayashi, K. Toko: Sensors and Actuators B Vol. 161 (2012), p.504.
Google Scholar
[37]
J. Singh, A. P. Bhondekar, M. L. Singla, and A. Sharma: ACS Appl. Mater. Interfaces Vol. 5(2013), p.5346.
Google Scholar
[38]
A. L. Sharma, K. Kumar, A. Deep: Sensors and Actuators A Vol. 198 (2013), p.107.
Google Scholar
[39]
J. Do, S. Wang: Sensors and Actuators B Vol. 185 (2013), p.39.
Google Scholar
[40]
H. Zhang, R. Liu, J. Zheng: Synthetic Metals Vol. 167 (2013), p.5.
Google Scholar
[41]
R. Wu, M. Tsai, K. Ho, T. Wei, T. Hsieh, Y. Han, C. Kuo, P. Tseng, Y. Wang: Polymer Vol. 55 (2014), p. (2035).
Google Scholar
[42]
Y. Zhao, E. Tomsˇ_k, J. Wang, Z. Mor_vkov_, A. Zhigunov, J. Stejskal, and M. Trchov_: Chem. Asian J. Vol. 8(2013), p.129.
Google Scholar
[43]
S. Li, D. Wu, C. Cheng, J. Wang, F. Zhang, Y. Su, and X. Feng: Angew. Chem. Int. Ed. Vol. 52(2013), p.12105.
Google Scholar
[44]
J. Kim, E. J. Siochi, J. Carpena-Núñez, K. E. Wise, J. W. Connell, Y. Lin, and R. A. Wincheski: ACS Appl. Mater. Interfaces Vol. 5(2013), p.8597.
DOI: 10.1021/am402077d
Google Scholar
[45]
M. Kotal, A. K. Thakur, and A. K. Bhowmick: ACS Appl. Mater. Interfaces Vol. 5(2013), p.8374.
Google Scholar
[46]
L. Santos, P. Martin, J. Ghilane, P. C. Lacaze, and J. Lacroix: ACS Appl. Mater. Interfaces Vol. 5(2013), p.10159.
DOI: 10.1021/am402846n
Google Scholar
[47]
C. Wang, H. Xu, C. Liang, Y. Liu, Z. Li, G. Yang, L. Cheng, Y. Li, and Z. Liu: ACSNANO. Vol. 7(2013 ), p.6782.
Google Scholar
[48]
K. Zhao , H. U. Khan , R. Li , Y. Su , and A. Amassian: Adv. Funct. Mater. Vol. 23( 2013), p.6024.
Google Scholar
[49]
X. Guo, M. Baumgarten, K. Müllen: Progress in Polymer Science Vol. 38 (2013), p.1832.
Google Scholar
[50]
K. Wang, H. Wu , Y. Meng , and Z. Wei: Small Vol. 10(2014), p.14.
Google Scholar
[51]
W. Qiu, L. Ma, M. Gan, J. Yan, S. Zeng, Z. Li, Y. Bai : J Nanopart Res Vol. 16(2014), p.2371.
Google Scholar
[52]
A. U. Haq , J. Lim , J. M. Yun , W. J. Lee , T. H. Han , and S. O. Kim: Small Vol. 9(2013), p.3829.
Google Scholar
[53]
Y. Tian, S. Cong, W. Su, H. Chen, Q. Li, F. Geng, and Z. Zhao: Nano Lett. In press.
Google Scholar
[54]
X. Ma, G. Li, M. Wang, Y. Cheng, R. Bai and H. Chen: Chemistry-A European Journal Vol. 12 (2006), p.3254.
Google Scholar
[55]
Y. Wang, P. Ding, R. Hu , J. Zhang, X. Ma, Z. Luo, G. Li: Sensors Vol. 13(2013), p.3765.
Google Scholar
[56]
X. Ma, M. Wang, G. Li, H. Chen, and R. Bai: Materials Chemistry and Physics Vol. 98 (2006), p.241.
Google Scholar
[57]
X. Ma, A. Liu, H. Xu, G. Li: Colloid and Polymer Science Vol. 285 (2007), p.1631.
Google Scholar
[58]
X. Ma, H. Xu, G. Li, M. Wang, H. Chen, and S. Chen: Macromolecular Materials and Engineering Vol. 291(2006), p.1539.
Google Scholar
[59]
X. Ma, M. Gao, X. He, and G. Li: Recent Patents of Nanotechnology Vol. 4(2010), p.150.
Google Scholar