dmit ligand
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Materials ◽  
2020 ◽  
Vol 13 (6) ◽  
pp. 1385
Author(s):  
Hyokyung Jeon ◽  
Hwahui Ryu ◽  
Inho Nam ◽  
Dong-Youn Noh

Hg2+ ions can accumulate in the natural environment and in organisms, where they cause damage to the central nervous system. Therefore, the detection of Hg2+ ions is essential for monitoring environmental contamination and human health. Herein, we demonstrate a simple method for tuning chemosensor signal ratios that significantly increased chemosensor selectivity for Hg2+ detection. Selectivity tuning was accomplished for chemosensors of the type (diphosphine)Pt(dmit), bearing the two different terminal groups 1,2-bis(diphenylphosphino)ethane (dppe) and 1,2-bis[bis(pentafluorophenyl)phosphino]ethane) (dfppe) due to the modulation of specific intermolecular interactions between the dmit ligand and Hg2+ ion. The structure exhibited a large pseudo-Stokes shift, which was advantageous for the internal reference signal and for eliminating potential artifacts. Straightforward chain-end manipulation enabled the tuning of chemosensor properties without additional chemical alterations. Based on these findings, we propose a new platform for improving the selectivity and sensitivity of colorimetric cation sensors. The results of this study will facilitate the designing of organic materials whose certain properties can be enhanced through precise control of the materials’ chemical hybridization by simple functional end-group manipulation.


Molecules ◽  
2019 ◽  
Vol 24 (6) ◽  
pp. 1088 ◽  
Author(s):  
Jhon Zapata-Rivera ◽  
Carmen Calzado

Metal dithiolene complexes—M(dmit)2—are key building blocks for magnetic, conducting, and optical molecular materials, with singular electronic structures resulting from the mixing of the metal and dmit ligand orbitals. Their use in the design of magnetic and conducting materials is linked to the control of the unpaired electrons and their localized/delocalized nature. It has been recently found that UV–Vis light can control the spin distribution of some [Cu(dmit)2]−2 salts in a direct and reversible way. In this work, we study the optical response of these salts and the origin of the differences observed in the EPR spectra under UV–Vis irradiation by means of wave function-based quantum chemistry methods. The low-lying states of the complex have been characterized and the electronic transitions with a non-negligible oscillator strength have been identified. The population of the corresponding excited states promoted by the UV–Vis absorption produces significant changes in the spin distribution, and could explain the changes observed in the system upon illumination. The interaction between neighbor [Cu(dmit)2]−2 complexes is weakly ferromagnetic, consistent with the relative orientation of the magnetic orbitals and the crystal packing, but in disagreement with previous assignments. Our results put in evidence the complex electronic structure of the [Cu(dmit)2]−2 radical and the relevance of a multideterminantal approach for an adequate analysis of their properties.


2010 ◽  
Vol 160 (13-14) ◽  
pp. 1535-1538 ◽  
Author(s):  
Ting Bin Li ◽  
Quan Ren ◽  
Ya Li Hu ◽  
Chun Lin Ma ◽  
Guo Bing Zheng ◽  
...  

1998 ◽  
Vol 98 (2) ◽  
pp. 103-106 ◽  
Author(s):  
Qichun Zhang ◽  
Peiji Wu ◽  
Shuqing Sun ◽  
Daoben Zhu ◽  
Ming Xong ◽  
...  

1997 ◽  
Vol 131 (1) ◽  
pp. 83-95 ◽  
Author(s):  
Hong-Qi Li ◽  
Sheng-Min Zhao ◽  
Min Wang ◽  
Gan-Zu Tan ◽  
Xian-Da Yu ◽  
...  
Keyword(s):  

1997 ◽  
Vol 86 (1-3) ◽  
pp. 1791-1793 ◽  
Author(s):  
A.E. Pullen ◽  
K.A. Abboud ◽  
J.R. Reynolds ◽  
J. Piotraschke ◽  
S. Zeltner ◽  
...  

1985 ◽  
Vol 120 (1) ◽  
pp. 377-380 ◽  
Author(s):  
P. Cassoux ◽  
L. Valade ◽  
M. Bousseau ◽  
J-P. Legros ◽  
M. Garbauskas ◽  
...  

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