## Abstract Density‐functional theory studies were applied to investigate the structural, electronic, and optical properties of 9‐heterofluorenes achieved by substituting the carbon at 9 position of fluorene with silicon, germanium, nitrogen, phosphor, oxygen, sulfur, selenium, or boron. These hete
Quantum chemical study of structures, electronic spectrum, and nonlinear optical properties of polynuclear lithium compounds
✍ Scribed by Chunsheng Qin; Yanling Si; Guochun Yang; Zhongmin Su
- Publisher
- Elsevier
- Year
- 2011
- Tongue
- English
- Weight
- 746 KB
- Volume
- 966
- Category
- Article
- ISSN
- 2210-271X
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✦ Synopsis
A theoretical study of polynuclear lithium compounds has shown that these species display large calculated nonlinear optical (NLO) responses. These compounds are based on aromatic subunits connected through polyhedral inorganic core (Li 7 O 6 or Li 8 O 6 ). These compounds show the calculated first hyperpolarizabilities (b) ranging from 262.55 to 16336.35 Â 10 À33 esu. The results show that subtle structural modification can substantially enhance the first hyperpolarizability. A basis for understanding the origin of these large NLO responses is proposed based on consideration of the molecular orbitals and electronic transition features of the compounds and the two-state model. Charge transfer from central core to the peripheral phenyl groups plays a key role in the nonlinear optical response. Moreover, the effects of different functionals and basis sets on first hyperpolarizability were systemically investigated.
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