Chemistry Reference
In-Depth Information
58. S. Padron, R. Patlan, J. Gutierrez, N. Santos, T. Eubanks and K. Lozano, J.
Appl. Polym. Sci., 2012, 125, 3610-3616.
59. B. Vazquez, H. Vasquez and K. Lozano, Polym. Eng. Sci., 2012, 52, 2260-
2265.
60. T. Lei, X. Cai, X. Wang, L. Yu, X. Hu, G. Zheng, W. Lv, L. Wang, D. Wu,
D. Sun and L. Lin, RSC Adv., 2013, 3, 24952.
61. D. Isakov, E. de, M. Gomes, I. Bdikin, B. Almeida, M. Belsley, M. Costa,
V. Rodrigues and A. Heredia, Cryst. Growth Des., 2011, 11, 4288-4291.
62. J. Mccann, J. Chen, D. Li, Z.-G. Ye and Y. Xia, Chem. Phys. Lett., 2006, 424,
162-166.
63. Y. Wang and J. J. Santiago-Avil´s, Integr. Ferroelectr., 2011, 126, 60-76.
64. X. Chen, N. Yao, Y. Shi and L. Zang, Energy Eciency and Renewable
Energy Through Nanotechnology, Springer London, London, 2011.
65. A. Baji, Y.-W. Mai, Q. Li and Y. Liu, Nanoscale, 2011, 3, 3068-3071.
66. Y. Wang and J. J. Santiago-Avil´s, Nanotechnology, 2004, 15, 32-36.
67. S. Kalinin and D. Bonnell, Phys. Rev. B., 2002, 65, 1-11.
68. D. V. Isakov, E. D. M. Gomes, B. G. Almeida, I. K. Bdikin, A. M. Martins
and A. L. Kholkin, J. Appl. Phys., 2010, 108, 042011.
69. J. J. Santiago-Aviles, Y. Wang, R. Furlan and I. Ramos, Appl. Phys. A:
Mater. Sci. Process., 2004, 78, 1043-1047.
70. F. P. Sun, Z. Chaudhry, C. Liang and C. A. Rogers, J. Intell. Mater. Syst.
Struct., 1995, 6, 134-139.
71. S. Jung and S. Kim, Precis. Eng., 1994, 16, 49-55.
72. J. Chang, M. Dommer, C. Chang and L. Lin, Nano Energy, 2012, 356-371.
73. Y. Hu, L. Lin, Y. Zhang and Z. L. Wang, Adv. Mater., 2011, 24, 110-114.
74. S. Xu, B. J. Hansen and Z. L. Wang, Nat. Commun., 2010, 1, 93.
75. D. Choi, K. Y. Lee, M.-J. Jin, S.-G. Ihn, S. Yun, X. Bulliard, W. Choi,
S.-Y. Lee, S.-W. Kim, J.-Y. Choi, J.-M. Kim and Z. L. Wang, Energy Environ.
Sci., 2011, 4, 4607-4613.
76. C. R. Bowen, R. Stevens, L. J. Nelson, A. C. Dent, G. Dolman, B. Su,
T. Button, M. Cain and M. Stewart, Smart Mater. Struct., 2006, 15, 295-
301.
77. Y. Qi, N. T. Jafferis, K. Lyons, C. M. Lee, H. Ahmad and M. C. McAlpine,
Nano Lett., 2010, 10, 524-528.
78. Piezoceramic fibers - Fraunhofer Institute for Ceramic Technologies
and Systems IKTS, (n.d.).
79. G. T. Davis, J. E. McKinney, M. G. Broadhurst and S. C. Roth, J. Appl.
Phys., 1978, 49, 324446.
80. Z. H. Liu, C. T. Pan, L. W. Lin, J. C. Huang and Z. Y. Ou, Smart Mater.
Struct., 2014, 23, 025003.
81. Z. H. Liu, C. T. Pan, L. W. Lin, H. W. Li, C. A. Ke, J. C. Huang, et al.,
Mechanical properties of piezoelectric PVDF/MWCNT fibers prepared by
flat/hollow cylindrical near-field electrospinning process, in the 8th An-
nual IEEE International Conference on Nano/Micro Eng. Mol. Syst., IEEE,
Suzhou, 2013, pp. 707-710.
82. B.J.Hansen,Y.Liu,R.YangandZ.L.Wang,ACS Nano, 2010, 4, 3647-3652.
d n 3 r 4 n g | 2
.
 
Search WWH ::




Custom Search