Optical properties of fullerenes confined in ordered alumina nanotube arrays
暂无分享,去创建一个
O. G. Morales-Saavedra | J. G. Bañuelos | A. A. Rodríguez-Rosales | F. G. Ontiveros-Barrera | M. E. Mata-Zamora | E. Álvarez-Zauco | E. Álvarez-Zauco | J. Bañuelos | O. Morales–Saavedra | A. Rodríguez-Rosales
[1] Mukesh P. Joshi,et al. Investigation of optical limiting in C60 solution , 1993 .
[2] Hui-Tian Wang,et al. Theoretical study on the closed-aperture Z-scan curves in the materials with nonlinear refraction and strong nonlinear absorption , 2001 .
[3] P. Ye,et al. Studies of third-order optical nonlinearities in C(60)-toluene and C(70)-toluene solutions. , 1992, Optics letters.
[4] Kornelius Nielsch,et al. Hexagonal pore arrays with a 50-420 nm interpore distance formed by self-organization in anodic alumina , 1998 .
[5] Ralf B. Wehrspohn,et al. Self-ordering Regimes of Porous Alumina: The 10% Porosity Rule , 2002 .
[6] G. Thompson,et al. Porous anodic film formation on aluminium , 1981, Nature.
[7] M. E. Mata-Zamora,et al. Thermal evolution of porous anodic aluminas: a comparative study , 2005 .
[8] E. W. Stryland,et al. Sensitive Measurement of Optical Nonlinearities Using a Single Beam Special 30th Anniversary Feature , 1990 .
[9] M. Teich,et al. Fundamentals of Photonics , 1991 .
[10] Yuxiao Wang,et al. Dynamics of reverse saturable absorption and all-optical switching in C 60 , 1994 .
[11] G. Wang,et al. Optical absorption spectra of C70 thin films , 1996 .
[12] J. A. Hermann,et al. Single-Beam Z-Scan: Measurement Techniques and Analysis , 1997 .
[13] I. F. Gun’kin,et al. Effect of nature of organic solvent on the absorption spectrum of C60 fullerene , 2006 .
[14] Wei Ji,et al. Determination of nonlinear absorption and refraction by single Z-scan method , 2000 .
[15] T K Dougherty,et al. Optical limiting with C(60) in polymethyl methacrylate. , 1993, Optics letters.
[16] C. C. Wang,et al. Nonlinear optics. , 1966, Applied optics.
[17] R. Piner,et al. An improved method to strip aluminum from porous anodic alumina films , 2003 .
[18] Y. Fukuda,et al. Behavior of Sulfate Ions daring Formation of Anodic Oxide Film on Aluminium , 1980 .
[19] Yuzo Yamamoto,et al. Nature of the carboxylate species incorporated in anodic alumina films formed in oxalic acid solution , 1983 .
[20] David J. Williams,et al. Introduction to Nonlinear Optical Effects in Molecules and Polymers , 1991 .
[21] Werner J. Blau,et al. Intensity-dependent absorption and resonant optical nonlinearity of C60 and C70 solutions , 1992 .
[22] D. N. Rao,et al. Dispersion studies of non-linear absorption in C60 using Z-scan , 1998 .
[23] F. Dong,et al. Sub-picosecond studies of the third-order optical nonlinearities of - toluene solutions , 1996 .
[24] Martin Moskovits,et al. Nonlithographic nano-wire arrays: fabrication, physics, and device applications , 1996 .
[25] J. Zyss,et al. Molecular Nonlinear Optics: Materials, Physics, and Devices , 2013 .
[26] Charles R. Martin,et al. Nanomaterials: A Membrane-Based Synthetic Approach , 1994, Science.
[27] Kornelius Nielsch,et al. Polycrystalline nanopore arrays with hexagonal ordering on aluminum , 1999 .
[28] E. W. Stryland,et al. High-sensitivity, single-beam n(2) measurements. , 1989, Optics letters.
[29] Paul A. Fleitz,et al. Nonlinear Optics of Organic Molecules and Polymers , 1997 .
[30] Lee W. Tutt,et al. Optical limiting performance of C60 and C70 solutions , 1992, Nature.
[31] Paras N. Prasad,et al. Nonlinear optical properties of the fullerene (C60) molecule: theoretical and experimental studies , 1992 .
[32] G. Thompson,et al. Nucleation and growth of porous anodic films on aluminium , 1978, Nature.
[33] Byrne,et al. Large infrared nonlinear optical response of C60. , 1991, Physical review letters.