Switchable second-order nonlinear optical response of platinum-sensitized dithienylethenes
-
Published:2019-06
Issue:04
Volume:18
Page:1950022
-
ISSN:0219-6336
-
Container-title:Journal of Theoretical and Computational Chemistry
-
language:en
-
Short-container-title:J. Theor. Comput. Chem.
Author:
Liu Xiao-Yun1,
Shi Zhi-Yuan1,
Ye Jin-Ting1,
Wang Hui-Ying1,
Wang Hong-Qiang1,
Qiu Yong-Qing1ORCID
Affiliation:
1. Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, Jilin 130024, P. R. China
Abstract
The electronic structure and the nonlinear optical (NLO) properties of a series of platinum-sensitized dithienylethenes (DTEs) were investigated by using the density functional theory (DFT) method. DFT calculations reveal that the second-order NLO properties of complexes significantly increase with the DTE ligand being directly linked with terpyridine–Pt(II) complexes. Due to the good [Formula: see text]-conjugated characteristics, closed-ring complexes possess much larger second-order NLO properties than the corresponding open-ring complexes. The computational [Formula: see text] values are in the order of 3c ([Formula: see text] esu) [Formula: see text] 3o ([Formula: see text] esu) [Formula: see text] 4c ([Formula: see text] esu) [Formula: see text] 4o ([Formula: see text] esu) [Formula: see text] 1 ([Formula: see text] esu) [Formula: see text] 2c ([Formula: see text] esu) [Formula: see text] 2o ([Formula: see text] esu). Among all calculated platinum-sensitized dithienylethenes, 3c has the largest second-order NLO properties. The 4c and 4o have almost the same [Formula: see text] values and the [Formula: see text] value of 4o is slightly larger than that of 2o because the ether bonds can significantly prevent charge transfer within the complexes.
Funder
The financial support from the National Natural Science Foundation of China
the 12th Five-Year Science and Technology Research Project of the Education Department of Jilin Province
Publisher
World Scientific Pub Co Pte Lt
Subject
Computational Theory and Mathematics,Physical and Theoretical Chemistry,Computer Science Applications