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All sol–gel organic–inorganic nonlinear optical materials based on melamines and an alkoxysilane dye
A series of all sol–gel organic–inorganic nonlinear optical materials based on the prepolymers of melamines and an alkoxysilane dye (ASD) were investigated. The NLO-active ASD containing nitroazobenzene was incorporated into the melamine matrices with different weight ratios. This all sol–gel type i...
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Published in: | Polymer (Guilford) 1999-11, Vol.40 (23), p.6417-6428 |
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Main Authors: | , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A series of all sol–gel organic–inorganic nonlinear optical materials based on the prepolymers of melamines and an alkoxysilane dye (ASD) were investigated. The NLO-active ASD containing nitroazobenzene was incorporated into the melamine matrices with different weight ratios. This all sol–gel type is shown to have the advantages of simultaneous polymerizations, and better compatibility between two components due to residual hydroxyl and silanol groups after curing. The simultaneous route is often used to avoid significant phase separation in a multi-component system. SEM results indicate that the inorganic networks are distributed uniformly throughout the organic networks on a molecular scale. The silica particle sizes are well under 1
μm. This series of all sol–gel materials exhibits large second-order optical nonlinearity (
d
33=10–54
pm/V at 1064
nm, and 3–17
pm/V at 1542
nm) after poling and curing. Temporal stability of the effective second harmonic coefficient at 100°C is also reported. |
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ISSN: | 0032-3861 1873-2291 |
DOI: | 10.1016/S0032-3861(99)00024-5 |