[1]
|
J. X. Y. Kong, Y. Ding, Z. L. Wang, et al. Single-crystal nanorings formed by epitaxial self-coiling of polar nanobelts. Science, 2004, 303: 1348.
|
[2]
|
X. Y. Kong, Z. L. Wang. Spontaneous polarization-induced nanohelixes, nanosprings, and nanorings of piezoelectric nanobelts. Nano Letters, 2003, 3(12): 1625.
|
[3]
|
谢耩, 温建忠, 汪国平等. 聚合物表面银纳米颗粒的大面积均匀沉积及其应用[J]. 物理学报, 2005, 54(1): 242.
|
[4]
|
黄运华, 张跃, 白雪冬等. ZnO双晶纳米梳[J]. 物理学报, 2006, 55(3): 1491
|
[5]
|
IIDA. T. Takuya, H. Ishihara. Optical manipulation of nano materials under quantum mechanical resonance conditions. IEICE- Transactions on Electronics, 2005, E88-C(9): 1809.
|
[6]
|
P. Baglioni, R. Giorgi. Soft and hard nanomaterials for restoration and conservation of cultural heritage. Soft Matter, 2006, 2(4): 293.
|
[7]
|
汪长征, 杨瑞明, 杨智等. 阳极氧化铝模板的制备研究[J]. 云南冶金, 2005, 34(1): 43-45.
|
[8]
|
陈大鹏, 杨瑞明, 张鹏翔等. 用AAO模板及脉冲激光溅射制备量子点阵[J]. 云南大学学报(自然科学版), 2004, 26(2): 134-138.
|
[9]
|
H. Yan, H. S. Choe, S. W. Nam, et al. Programmable nanowire circuits for nanoprocessors. Nature, 2011, 470: 240-244.
|
[10]
|
A. P. Li, F. Müller, A. Birner, et al. Polycrystalline nanopore arrays with hexagonal ordering on aluminum. Advanced Materials, 1999, 17(4): 1248.
|
[11]
|
O. Jessensky, F. Müller and U. Gösele. Self-organized formation of hexagonal pore arrays in anodic alumina. Applied Physics Letters, 1998, 72(10): 1173.
|
[12]
|
U. Khan, I. O’Connor, Y. K. Gun’ko, et al. The preparation of hybrid films of carbon nanotubes and nano-graphite/graphene with excellent mechanical and electrical properties. Carbon, 2010, 48 (10): 2825-2830.
|
[13]
|
Y. Lei, R. Zhao, Y. Zhan, et al. Generation of multiwalled carbon nanotubes from iron—Phthalocyanine polymer and their novel dielectric properties. Chemical Physics Letters, 2010, 496(1-3): 139-142.
|
[14]
|
V. P. Parkhutik, V. I. Shershulsky. Theoretical modelling of porous oxide growth on aluminium. Journal of Physics D: Applied Physics, 1992, 25(8): 1258-1264.
|