1 |
Use of the Lognormal-Distribution Function to Describe Orientational Relaxation in Optically Nonlinear Polymers Verbiest T, Burland DM, Walsh CA Macromolecules, 29(19), 6310, 1996 |
2 |
Orientation Relaxation in Glassy-Polymers .2. Dipole-Size Spectroscopy and Short-Time Kinetics Patashinski AZ, Ratner MA Journal of Chemical Physics, 103(24), 10779, 1995 |
3 |
Study of Poling and Relaxation in Kink and Linear Main-Chain-Functionalized Polymers for 2nd-Order Nonlinear-Optical Applications Liu LY, Lackritz HS, Wright ME, Mullick S Macromolecules, 28(6), 1912, 1995 |
4 |
Organic Nlo Polymers .2. A Study of Main-Chain and Guest-Host-Chi((2)) Nlo Polymers - Nlo-Phore Structure Versus Poling Wright ME, Mullick S, Lackritz HS, Liu LY Macromolecules, 27(11), 3009, 1994 |
5 |
Organometallic Nonlinear-Optical Polymers .4. Organometallic Main-Chain, Side-Chain, and Guest-Host Polymers - A Study of Their Orientation and Relaxation Using 2nd-Harmonic Generation Wright ME, Toplikar EG, Lackritz HS, Kerney JT Macromolecules, 27(11), 3016, 1994 |
6 |
Electric-Field Poling Effects on the Molecular Reorientational Dynamics of Side-Chain Nonlinear-Optical Polymers Wang H, Jarnagin RC, Samulski ET Macromolecules, 27(17), 4705, 1994 |
7 |
Theoretical and Experimental 2nd-Harmonic Generation Studies of the Rotational Elastic Response of a Dye Molecule in a Random Copolymer of Styrene and Methyl-Methacrylate Dirk CW, Devanathan S, Velez M, Ghebremichael F, Kuzyk MG Macromolecules, 27(21), 6167, 1994 |
8 |
Relationship Between Reorientational Motions of a Photochromic Dopant and Local Relaxation Processes of a Glassy Polymer Matrix Trancong Q, Chikaki S, Kanato H Polymer, 35(20), 4465, 1994 |