[1]
X. Y. Guo, S. Han, H. F. Mao, S. M. Dong, C. C. Wu, L. C. Jia, B. Chai, J. Pu, J. Li. J. Power Sources. 245 (2014) 979-985.
Google Scholar
[2]
Z. Song, Q. Li, L. Gao, Mater. Sci. Technol. 13 (1997) 321-323.
Google Scholar
[3]
Z. D. Wei, R. Wang, Petroleum and Coal. 56 (2014) 475-479.
Google Scholar
[4]
T. Soejima, R. H. Jin, Y. Terayama, A. Takahara, T. Shiraishi, S. Ito, N. Kimizuka, Langmiur. 28 (2012) 2637-2642.
DOI: 10.1021/la203943j
Google Scholar
[5]
K. Bhattacharyya, S. Varma, A. K. Tripathi, S. R. Bharadwaj, A. K. Tyagi. J. Mater. Research. 25 (2010) 125-133.
Google Scholar
[6]
L. X. Sang, J. L. Gole, J. W. Wang, J. Brauer, B. D. Mao, S. M, Procks, C. J. Burda, J. Phys. Chem. C. 117 (2013) 15287-15294.
Google Scholar
[7]
D. M. Chen, Z. Y. Jiang, J. Q. Geng, Q. Wang, D. Yang, Ind. Eng. Chem. Res. 46 (2007) 2741-2746.
Google Scholar
[8]
X. Chen, S. S. Mao, Chem. Rev. 107 (2007) 2891-2959.
Google Scholar
[9]
S. S. Zhang, F. Peng, H. J. Wang, H. Yu, S. Q. Zhang, J. Yang, H. J. Zhao, Catalysis Communications. 12 (2011) 689-693.
Google Scholar
[10]
X. Gao, Y. Jiang, Y. C. Fu, Y. Zhong, Z. Y. Luo, K. F. Cen, Catalysis Communications. 11 (2011) 465-469.
Google Scholar
[11]
J. Y. Wang, G. B. Ji, Y. S. Liu, M. A. Gondal, X. F. Chang, Catalysis Communications. 46 (2014) 17-21.
Google Scholar
[12]
T. R. Gordan, M. Cargnello, T. Paik, F. Mangolini, R. T. Weber, P. Fornasiero, C.B. Murray, J. Am. Chem. Soc. 134 (2012) 6751-6761.
DOI: 10.1021/ja300823a
Google Scholar
[13]
X. B. Chen, L. Liu, Peter Y. Yu, Samuel, S. Mao, Science. 331 (2011) 746-749.
Google Scholar
[14]
M. Zhang, C. C. Chen, W.H. Ma, J.C. Zhao, Angewandte Chemie International Edition. 47 (2008) 9730-9733.
Google Scholar
[15]
Y. Z. Long, M. M. Li, G. Z. Gu, M. X. Wan, J. Duvail, Z. W. Liu, Z. Y. Fan, Prog. Polym. Sci. 36 (2011), 1415-1442.
Google Scholar
[16]
J. Liu, Y. Liu, N. Y. Liu, Y. Z. Han, X, Zhang, H. Huang, Y. Lifshitz, S. T. Lee, J. Zhong, Z. H. Kang, Science. 347 (2015) 970-974.
Google Scholar
[17]
S. Ghosh, N. A. Kouame, L. Ramos, S. Remita, A. Dazzi, A. Deniset-Besseau, P. Beaunier, F. Goubard, P. H. Aubert, H. Remita, Nature materials. 14 (2015) 505-511.
DOI: 10.1038/nmat4220
Google Scholar
[18]
R. S. Sprick, J. X. Jiang, B. Bonillo, S. J. Ren, T. Ratvijitvech, P. Guiglion, M. A. Zwijnenburg, D. J. Adams, A. I. Cooper, J. Am. Chem. Soc. 137 (2015) 3265-3270.
DOI: 10.1021/ja511552k
Google Scholar
[19]
D. V. Talapin, E. V. Shevchenko, M. I. Bondnarchuk, X. C. Ye, J. Chen, C. B. Murray, Nature Letters. 461 (2009) 964-967.
Google Scholar
[20]
H. Wang, X. Yuan, Y. Wu, G. Zeng, X. Chen, L. Leng, Z. Wu, L. Jiang, H. Li, J. Hazard. Mater. 286 (2015) 187-194.
Google Scholar
[21]
M. Shang, W. Wang, L. Zhang, J. Hazard. Mater. 167 (2009) 803-809.
Google Scholar
[22]
T. L. Thompson, J. T. Yates Jr., Chem. Rev. 106 (2006) 4428-4453.
Google Scholar
[23]
H. Wang, X. Yuan, Y. Wu, G. Zeng, X. Chen, L. Leng, H. Li, Applied Catalysis B: Environmental. 174-175 (2015) 445-454.
Google Scholar