том 47 издание 12 страницы 3643-3654

Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality

Тип публикацииJournal Article
Дата публикации2014-11-19
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR5.472
CiteScore31.2
Impact factor18
ISSN00014842, 15204898
General Chemistry
General Medicine
Краткое описание
ConspectusAmplification of enantiomeric excess (ee) is a key feature for the chemical evolution of biological homochirality from the origin of chirality. We describe the amplification of ee in the asymmetric autocatalysis of 5-pyrimidyl alkanols in the reaction between diisopropylzinc (i-Pr2Zn) and pyrimidine-5-carbaldehydes. During the reaction, an extremely low ee (ca. 0.00005% ee) can be amplified to >99.5% ee, and therefore, the initial slightly major enantiomer is automultiplied by a factor of ca. 630000, while the initial slightly minor enantiomer is automultiplied by a factor of less than 1000. In addition, pyrimidyl alkanols with various substituents at the 2-position of the pyrimidine ring, 3-quinolyl alkanol, 5-carbamoyl-3-pyridyl alkanol, and large multifunctionalized pyrimidyl alkanols also act as highly efficient asymmetric autocatalysts in the addition of i-Pr2Zn to the corresponding aldehydes.The asymmetric autocatalysis of pyrimidyl alkanol can discriminate the chirality of various compounds. Chiral substances such as alcohols, amino acids, hydrocarbons, metal complexes, and heterogeneous chiral materials can act as chiral triggers for asymmetric autocatalysis to afford pyrimidyl alkanols with the corresponding absolute configuration of the initiator. This recognition ability of chiral compounds is extremely high, and chiral discrimination of a cryptochiral quaternary saturated hydrocarbon was established by applying asymmetric autocatalysis.By using the large amplification effect of the asymmetric autocatalysis, we can link various proposed origins of chirality with highly enantioenriched organic compounds in conjunction with asymmetric autocatalysis. Thus, a statistical fluctuation in ee of racemic compounds can be amplified to high ee by using asymmetric autocatalysis. Enantiomeric imbalance induced by irradiation of circularly polarized light can affect the enantioselectivity of asymmetric autocatalysis. The asymmetric autocatalysis was also triggered by the morphology of inorganic chiral crystals such as quartz, sodium chlorate, and cinnabar. Chiral organic crystals of achiral compounds also act as chiral initiators, and during the study of a crystal of cytosine, enantioselective chiral crystal phase transformation of the cytosine crystal was achieved by removal of the water of crystallization in an achiral monohydrate crystal. Enantioselective C–C bond formation was realized on the surfaces of achiral single crystals based on the oriented prochirality of achiral aldehydes. Furthermore, asymmetric autocatalysis of pyrimidyl alkanols is a highly sensitive reaction that can recognize and amplify the significantly small effect of a chiral compound arising solely from isotope substitution of hydrogen, carbon, and oxygen (D/H, 13C/12C, and 18O/16O). These examples show that asymmetric autocatalysis with an amplification of chirality is a powerful tool for correlating the origin of chirality with highly enantioenriched organic compounds.Asymmetric autocatalysis using two β-amino alcohols reveals a reversal of enantioselectivity in the addition of i-Pr2Zn to aldehyde and is one approach toward understanding the mechanism of asymmetric dialkylzinc addition, where heteroaggregates act as the catalytic species.
Для доступа к списку цитирований публикации необходимо авторизоваться.
Для доступа к списку профилей, цитирующих публикацию, необходимо авторизоваться.

Топ-30

Журналы

2
4
6
8
10
Angewandte Chemie
10 публикаций, 5.99%
Angewandte Chemie - International Edition
10 публикаций, 5.99%
Chemistry - A European Journal
10 публикаций, 5.99%
Journal of the American Chemical Society
9 публикаций, 5.39%
Chemical Communications
7 публикаций, 4.19%
Organic and Biomolecular Chemistry
6 публикаций, 3.59%
Symmetry
5 публикаций, 2.99%
Nature Communications
5 публикаций, 2.99%
Chirality
5 публикаций, 2.99%
Origins of Life and Evolution of Biospheres
3 публикации, 1.8%
ChemCatChem
3 публикации, 1.8%
Chemical Science
3 публикации, 1.8%
Chemical Society Reviews
3 публикации, 1.8%
Journal of Chemical Physics
2 публикации, 1.2%
Bulletin of the Chemical Society of Japan
2 публикации, 1.2%
Chemistry Letters
2 публикации, 1.2%
Journal of Mathematical Chemistry
2 публикации, 1.2%
Nature Chemistry
2 публикации, 1.2%
Tetrahedron
2 публикации, 1.2%
Journal of Organic Chemistry
2 публикации, 1.2%
Accounts of Chemical Research
2 публикации, 1.2%
Journal of Physical Chemistry C
2 публикации, 1.2%
Chemical Reviews
2 публикации, 1.2%
RSC Advances
2 публикации, 1.2%
Physical Chemistry Chemical Physics
2 публикации, 1.2%
Research
2 публикации, 1.2%
Physical Review E
1 публикация, 0.6%
Physical Review Research
1 публикация, 0.6%
Astrobiology
1 публикация, 0.6%
2
4
6
8
10

Издатели

5
10
15
20
25
30
35
40
45
50
Wiley
49 публикаций, 29.34%
Royal Society of Chemistry (RSC)
29 публикаций, 17.37%
American Chemical Society (ACS)
25 публикаций, 14.97%
Elsevier
23 публикации, 13.77%
Springer Nature
14 публикаций, 8.38%
MDPI
7 публикаций, 4.19%
Oxford University Press
4 публикации, 2.4%
AIP Publishing
2 публикации, 1.2%
American Physical Society (APS)
2 публикации, 1.2%
American Association for the Advancement of Science (AAAS)
2 публикации, 1.2%
Mary Ann Liebert
1 публикация, 0.6%
American Astronomical Society
1 публикация, 0.6%
The Society of Synthetic Organic Chemistry, Japan
1 публикация, 0.6%
Taylor & Francis
1 публикация, 0.6%
Pleiades Publishing
1 публикация, 0.6%
openRxiv
1 публикация, 0.6%
Japan Academy
1 публикация, 0.6%
IOP Publishing
1 публикация, 0.6%
CAIRN
1 публикация, 0.6%
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 публикация, 0.6%
5
10
15
20
25
30
35
40
45
50
  • Мы не учитываем публикации, у которых нет DOI.
  • Статистика публикаций обновляется еженедельно.

Вы ученый?

Создайте профиль, чтобы получать персональные рекомендации коллег, конференций и новых статей.
 Войти с ORCID
Метрики
167
Поделиться
Цитировать
ГОСТ |
Цитировать
Soai K., Kawasaki T. Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality // Accounts of Chemical Research. 2014. Vol. 47. No. 12. pp. 3643-3654.
ГОСТ со всеми авторами (до 50) Скопировать
Soai K., Kawasaki T. Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality // Accounts of Chemical Research. 2014. Vol. 47. No. 12. pp. 3643-3654.
RIS |
Цитировать
TY - JOUR
DO - 10.1021/ar5003208
UR - https://doi.org/10.1021/ar5003208
TI - Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality
T2 - Accounts of Chemical Research
AU - Soai, Kenso
AU - Kawasaki, Tsuneomi
PY - 2014
DA - 2014/11/19
PB - American Chemical Society (ACS)
SP - 3643-3654
IS - 12
VL - 47
PMID - 25511374
SN - 0001-4842
SN - 1520-4898
ER -
BibTex |
Цитировать
BibTex (до 50 авторов) Скопировать
@article{2014_Soai,
author = {Kenso Soai and Tsuneomi Kawasaki},
title = {Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality},
journal = {Accounts of Chemical Research},
year = {2014},
volume = {47},
publisher = {American Chemical Society (ACS)},
month = {nov},
url = {https://doi.org/10.1021/ar5003208},
number = {12},
pages = {3643--3654},
doi = {10.1021/ar5003208}
}
MLA
Цитировать
Soai, Kenso, et al. “Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality.” Accounts of Chemical Research, vol. 47, no. 12, Nov. 2014, pp. 3643-3654. https://doi.org/10.1021/ar5003208.
Ошибка в публикации?