Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5391933 | Chemical Physics Letters | 2006 | 6 Pages |
Abstract
The nonlinear optical properties of newly synthesized triaryl boron-based A-Ï-A and triaryl nitrogen-based D-Ï-D compounds have been studied with hybrid density functional theory. The generalized few-state model is employed to calculate two-photon absorption cross sections of the compounds. It is found that boron-based A-Ï-A compounds have large two-photon absorption cross sections. Moreover, the length of Ï center has larger effect on the one- and two-photon absorption properties of boron-based A-Ï-A compounds than those of nitrogen-based D-Ï-D compounds. The numerical simulation shows that boron-based A-Ï-A compounds have similar performance as nitrogen-based D-Ï-D analogues in regard to nonlinear optical properties. Boron-based A-Ï-A compounds are promising candidates for large two-photon absorption materials. The theoretical results are in good agreement with the available experimental measurements.
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Authors
Li-Min Tao, Ya-Hui Guo, Xiao-Ming Huang, Chuan-Kui Wang,