dc.contributor.author |
Wahab, OO
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|
dc.contributor.author |
Olasunkanmi, LO
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dc.contributor.author |
Govender, Krishna
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dc.contributor.author |
Govender, PP
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dc.date.accessioned |
2019-12-02T09:40:43Z |
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dc.date.available |
2019-12-02T09:40:43Z |
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dc.date.issued |
2019-06 |
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dc.identifier.citation |
Wahab, O.O., Olasunkanmi, L.O., Govender, K.K. and Govender, P.P. 2019. Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study. Molecular Physics, 22pp. |
en_US |
dc.identifier.issn |
0026-8976 |
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dc.identifier.issn |
1362-3028 |
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dc.identifier.uri |
https://www.tandfonline.com/doi/full/10.1080/00268976.2019.1626508
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dc.identifier.uri |
https://doi.org/10.1080/00268976.2019.1626508
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dc.identifier.uri |
http://hdl.handle.net/10204/11248
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|
dc.description |
Copyright: 2019 Taylor and Francis. Due to copyright restrictions, the attached PDF file only contains the abstract of the full text item. For access to the full text item, kindly consult the publisher's website. |
en_US |
dc.description.abstract |
Effects of substituent groups on aqueous solubility, chemical reactivity and absorption wavelength of Disperse red 73 (DR73) were theoretically investigated using density functional theory (DFT) method. This study is in view of introducing new monoazo disperse dyes with improved aqueous solubility, absorption behaviour, and degradation tendency. Aqueous solubility was calculated using Cramer et al. solubility equation and the parameters used were obtained using conductor-like screening model for realistic solvation (COSMO-RS). Chemical reactivity and catalytic affinity were evaluated using some molecular orbital dependent reactivity descriptors. Susceptibility of the molecules to radical attacks was predicted using Fukui functions. Absorption wavelength was calculated using the B3LYP functional with the 6-31G* basis set. The results showed that electron withdrawing -CN substituent promoted aqueous solubility of DR73 more than the -NO2 counterpart, while the solubility is mostly enhanced by -NH2 substituent compared to the other electron donating groups studied. Most of the derivatives yielded longer absorption wavelength in the visible region and are chemically less stable (i.e. more degradable) compared to the parent molecule. Among the photocatalysts considered, ZnO is predicted as the most efficient candidate for degradation of the dyes. Predicted properties showed remarkable sensitivity to substitution positions in the parent molecule. |
en_US |
dc.language.iso |
en |
en_US |
dc.publisher |
Taylor and Francis Online |
en_US |
dc.relation.ispartofseries |
Worklist;22900 |
|
dc.subject |
Absorption wavelength |
en_US |
dc.subject |
Aqueous solubility |
en_US |
dc.subject |
Azo dye |
en_US |
dc.subject |
Chemical reactivity |
en_US |
dc.subject |
Density functional theory |
en_US |
dc.title |
Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study |
en_US |
dc.type |
Article |
en_US |
dc.identifier.apacitation |
Wahab, O., Olasunkanmi, L., Govender, K., & Govender, P. (2019). Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study. http://hdl.handle.net/10204/11248 |
en_ZA |
dc.identifier.chicagocitation |
Wahab, OO, LO Olasunkanmi, Krishna Govender, and PP Govender "Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study." (2019) http://hdl.handle.net/10204/11248 |
en_ZA |
dc.identifier.vancouvercitation |
Wahab O, Olasunkanmi L, Govender K, Govender P. Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study. 2019; http://hdl.handle.net/10204/11248. |
en_ZA |
dc.identifier.ris |
TY - Article
AU - Wahab, OO
AU - Olasunkanmi, LO
AU - Govender, Krishna
AU - Govender, PP
AB - Effects of substituent groups on aqueous solubility, chemical reactivity and absorption wavelength of Disperse red 73 (DR73) were theoretically investigated using density functional theory (DFT) method. This study is in view of introducing new monoazo disperse dyes with improved aqueous solubility, absorption behaviour, and degradation tendency. Aqueous solubility was calculated using Cramer et al. solubility equation and the parameters used were obtained using conductor-like screening model for realistic solvation (COSMO-RS). Chemical reactivity and catalytic affinity were evaluated using some molecular orbital dependent reactivity descriptors. Susceptibility of the molecules to radical attacks was predicted using Fukui functions. Absorption wavelength was calculated using the B3LYP functional with the 6-31G* basis set. The results showed that electron withdrawing -CN substituent promoted aqueous solubility of DR73 more than the -NO2 counterpart, while the solubility is mostly enhanced by -NH2 substituent compared to the other electron donating groups studied. Most of the derivatives yielded longer absorption wavelength in the visible region and are chemically less stable (i.e. more degradable) compared to the parent molecule. Among the photocatalysts considered, ZnO is predicted as the most efficient candidate for degradation of the dyes. Predicted properties showed remarkable sensitivity to substitution positions in the parent molecule.
DA - 2019-06
DB - ResearchSpace
DP - CSIR
KW - Absorption wavelength
KW - Aqueous solubility
KW - Azo dye
KW - Chemical reactivity
KW - Density functional theory
LK - https://researchspace.csir.co.za
PY - 2019
SM - 0026-8976
SM - 1362-3028
T1 - Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study
TI - Tuning the aqueous solubility, chemical reactivity and absorption wavelength of azo dye through systematic adjustment of molecular charge density: A DFT study
UR - http://hdl.handle.net/10204/11248
ER -
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en_ZA |