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Pregled bibliografske jedinice broj: 832857

Inverse Hyperconjugation in Organic Carbonate Anions


Matić, Mirela; Denegri, Bernard; Kronja, Olga
Inverse Hyperconjugation in Organic Carbonate Anions // 23rd IUPAC Conference on Physical Organic Chemistry (ICPOC23)-Book of abstracts
Sydney, 2016. (predavanje, nije recenziran, sažetak, znanstveni)


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Naslov
Inverse Hyperconjugation in Organic Carbonate Anions

Autori
Matić, Mirela ; Denegri, Bernard ; Kronja, Olga

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni

Izvornik
23rd IUPAC Conference on Physical Organic Chemistry (ICPOC23)-Book of abstracts / - Sydney, 2016

Skup
23rd IUPAC Conference on Physical Organic Chemistry (ICPOC23)

Mjesto i datum
Sydney, Australija, 03.07.2016. - 08.07.2016

Vrsta sudjelovanja
Predavanje

Vrsta recenzije
Nije recenziran

Ključne riječi
negative hyperconjugation; bicarbonate; organic carbonate

Sažetak
Solvolysis rates of the series of benzhydryl aryl and alkyl carbonates in 80% aqueous ethanol revealed that aryl carbonates solvolyze at least one order of magnitude faster than the corresponding alkyl carbonates, indicating additional electronic stabilization in the former nucleofuges. This rate ratio be rationalized if existence of negative hyperconjugation in the carbonate anion is considered, which enables transfer of the negative charge from carboxylate moiety to the aromatic ring. Ab initio calculations at the MP2(full)/6-311+G(2d, p) level of theory in gas phase and in solution (IEPCM) have been employed to investigate the reaction paths for heterolysis of the model esters and further decomposition of the generated aryl, alkyl and hydrogen carbonate anions to free carbon dioxide and the corresponding phenoxide/alkoxide/hydroxide anion via heterolytic TS and a subsequent complex. Energy relations, geometry parameters and bond orders in optimized structures, as well as NBO analysis strongly suggest that the negative hyperconjugation is a dominant electronic effect in the aryl, alkyl and hydrogen carbonate anions that stabilizes them toward a carbocation, but causes their further decomposition as well. The calculations also reveal that due to negative hyperconjugation, the basicity of the carboxylate oxygen atoms are decreased, and the oxygen atom on alkyl/aryl group is the most basic site in carbonate anion. Therefore, decomposition of the protonated carboante anions (monoeasters of carbonic acid and its monoesters) in acidic and neutral media may proceed according to presented mechanism.

Izvorni jezik
Engleski

Znanstvena područja
Kemija



POVEZANOST RADA


Projekti:
HRZZ-IP-2013-11-1021 - STRUKTURNA OBILJEŽJA KOJA ODREĐUJU NUKLEOFUGALNOST IZLAZNIH SKUPINA TE TEORIJSKI MODEL ZA PROCJENU SOLVOLITIČKE REAKTIVNOSTI (NUCLEOFUGALITY) (Kronja, Olga, HRZZ - 2013-11) ( CroRIS)

Ustanove:
Farmaceutsko-biokemijski fakultet, Zagreb

Profili:

Avatar Url Bernard Denegri (autor)

Avatar Url Mirela Matić (autor)

Avatar Url Olga Kronja (autor)

Citiraj ovu publikaciju:

Matić, Mirela; Denegri, Bernard; Kronja, Olga
Inverse Hyperconjugation in Organic Carbonate Anions // 23rd IUPAC Conference on Physical Organic Chemistry (ICPOC23)-Book of abstracts
Sydney, 2016. (predavanje, nije recenziran, sažetak, znanstveni)
Matić, M., Denegri, B. & Kronja, O. (2016) Inverse Hyperconjugation in Organic Carbonate Anions. U: 23rd IUPAC Conference on Physical Organic Chemistry (ICPOC23)-Book of abstracts.
@article{article, author = {Mati\'{c}, Mirela and Denegri, Bernard and Kronja, Olga}, year = {2016}, keywords = {negative hyperconjugation, bicarbonate, organic carbonate}, title = {Inverse Hyperconjugation in Organic Carbonate Anions}, keyword = {negative hyperconjugation, bicarbonate, organic carbonate}, publisherplace = {Sydney, Australija} }
@article{article, author = {Mati\'{c}, Mirela and Denegri, Bernard and Kronja, Olga}, year = {2016}, keywords = {negative hyperconjugation, bicarbonate, organic carbonate}, title = {Inverse Hyperconjugation in Organic Carbonate Anions}, keyword = {negative hyperconjugation, bicarbonate, organic carbonate}, publisherplace = {Sydney, Australija} }




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