Author | dc.contributor.author | Pereira Orenha, Renato | |
Author | dc.contributor.author | Da Silva, Vanessa Borges | |
Author | dc.contributor.author | Caramori, Giovanni Finoto | |
Author | dc.contributor.author | De Souza Schneider, Felipe | |
Author | dc.contributor.author | Piotrowski, Mauricio Jeomar | |
Author | dc.contributor.author | Contreras-García, Julia | |
Author | dc.contributor.author | Cárdenas, Carlos | |
Author | dc.contributor.author | Briese Goncalves, Marina | |
Author | dc.contributor.author | Mendizábal Emaldia, Fernando | |
Author | dc.contributor.author | Parreira, Renato Luis Tame | |
Admission date | dc.date.accessioned | 2021-03-28T21:24:37Z | |
Available date | dc.date.available | 2021-03-28T21:24:37Z | |
Publication date | dc.date.issued | 2020 | |
Cita de ítem | dc.identifier.citation | New Journal of Chemistry Volumen: 44 Número: 41 Páginas: 17831-17839 Nov 2020 | es_ES |
Identifier | dc.identifier.other | 10.1039/d0nj03685d | |
Identifier | dc.identifier.uri | https://repositorio.uchile.cl/handle/2250/178832 | |
Abstract | dc.description.abstract | Anion recognition is widely used in several biological fields. Squaramide derived compounds appear as potential structures to recognize anions. Here, the bond mechanisms between the chloride (Cl-), bromide (Br-) and nitrate (NO3-) anions and anthracene-squaramide conjugated compounds are elucidated considering the influence of the: (i) number, (ii) nature, and (iii) position of the substituents: trifluoromethyl (-CF3) and nitro (-NO2). Energy decomposition analysis (EDA) shows that the interactions between Cl-, Br- and NO3- and anthracene-squaramide have an attractive interaction energy supported predominantly by electrostatic energy followed by orbital contribution. Molecular electrostatic potential (MEP) surfaces imply electrostatic interactions between Cl-, Br- and the oxygen atom from NO3- and the hydrogen atoms from N-H and C-H bonds present in the squaramide structure, and an aryl group, respectively. Cl- interacts with the receptors more strongly than Br-. The NO3- recognition is less attractive than those presented by Cl- and Br-, in agreement with the hardness-softness features of these anions. Importantly, one and, mostly, two group substitutions, -H -> -CF3 or -NO2, favor the recognition of Cl-, Br- and NO3- due to the increase of the polarization in the receptor-NHMIDLINE HORIZONTAL ELLIPSISanion interaction. The -NO2 group promotes a larger effect relative to the -CF3 ligand. The -NO2 ligand positioned at the largest distance conceivable to the benzene-NH group promotes the lowest interference in the N-HMIDLINE HORIZONTAL ELLIPSISCl- interaction. These results provide information to design receptors with a larger capability to recognize anions. | es_ES |
Patrocinador | dc.description.sponsorship | CoordenacAo de Aperfeicoamento de Pessoal de Nivel Superior - Brasil (CAPES) Finance
001
Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP)
2011/07623-8
2017/24856-2
2019/19175-1
National Council for Scientific and Technological Development (CNPq)
313648/2018-2
Foundation for Research Support of the State of Rio Grande do Sul (FAPERGS)
National Council for Scientific and Technological Development (CNPq)
306297/2018-3
430364/2018-0
LabEx CALSIMLAB
ANR-11-LABX-0037-01
ANR-11-IDEX-0004-02
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT
1181121
Centers of Excellence with Basal/Conicyt Financing
FB0807
National Council for Scientific and Technological Development (CNPq)
311963/2017-0 | es_ES |
Lenguage | dc.language.iso | en | es_ES |
Publisher | dc.publisher | Royal Society of Chemistry | es_ES |
Source | dc.source | New Journal of Chemistry | es_ES |
Keywords | dc.subject | Molecular-orbital methods | es_ES |
Keywords | dc.subject | Drinking-water | es_ES |
Keywords | dc.subject | Basis-sets | es_ES |
Keywords | dc.subject | Noncovalent interactions | es_ES |
Keywords | dc.subject | Hydrogen-bond | es_ES |
Keywords | dc.subject | Combination | es_ES |
Keywords | dc.subject | Chemistry | es_ES |
Título | dc.title | On the recognition of chloride, bromide and nitrate anions by anthracene-squaramide conjugated compounds: a computational perspective | es_ES |
Document type | dc.type | Artículo de revista | es_ES |
dcterms.accessRights | dcterms.accessRights | Acceso a solo metadatos | es_ES |
Cataloguer | uchile.catalogador | crb | es_ES |
Indexation | uchile.index | Artículo de publicación ISI | |
Indexation | uchile.index | Artículo de publicación SCOPUS | |