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Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications

Само за регистроване кориснике
2018
Аутори
Bihelović, Filip
Vulović, Bojan
Saičić, Radomir
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
The advent of gold catalysis has transformed hydroxyalkoxylation of alkynes - once a rudimentary, mercury(II)-, or silver(I)-catalyzed process limited to structurally simple substrates - into a sophisticated method that has found application in syntheses of highly complex organic molecules. This transformation can further be combined with carbon-carbon bond-forming reactions into domino sequences that allow for a considerable increase of molecular complexity within a single synthetic step. Some recent examples of the development and synthetic applications of these reactions are provided.
Кључне речи:
domino reactions / gold catalysis / total synthesis
Извор:
Israel Journal of Chemistry, 2018, 58, 5, 521-530
Издавач:
  • Wiley-V C H Verlag Gmbh, Weinheim
Финансирање / пројекти:
  • Развој нових синтетичких метода и њихова примена у синтези природних производа и биолошки активних једињења (RS-172027)
  • Serbian Academy of Sciences and Arts [F193]

DOI: 10.1002/ijch.201700033

ISSN: 0021-2148

WoS: 000434119900003

Scopus: 2-s2.0-85048041582
[ Google Scholar ]
4
4
URI
https://cherry.chem.bg.ac.rs/handle/123456789/2156
Колекције
  • Publikacije
Институција/група
Hemijski fakultet
TY  - JOUR
AU  - Bihelović, Filip
AU  - Vulović, Bojan
AU  - Saičić, Radomir
PY  - 2018
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/2156
AB  - The advent of gold catalysis has transformed hydroxyalkoxylation of alkynes - once a rudimentary, mercury(II)-, or silver(I)-catalyzed process limited to structurally simple substrates - into a sophisticated method that has found application in syntheses of highly complex organic molecules. This transformation can further be combined with carbon-carbon bond-forming reactions into domino sequences that allow for a considerable increase of molecular complexity within a single synthetic step. Some recent examples of the development and synthetic applications of these reactions are provided.
PB  - Wiley-V C H Verlag Gmbh, Weinheim
T2  - Israel Journal of Chemistry
T1  - Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications
VL  - 58
IS  - 5
SP  - 521
EP  - 530
DO  - 10.1002/ijch.201700033
UR  - Kon_3487
ER  - 
@article{
author = "Bihelović, Filip and Vulović, Bojan and Saičić, Radomir",
year = "2018",
abstract = "The advent of gold catalysis has transformed hydroxyalkoxylation of alkynes - once a rudimentary, mercury(II)-, or silver(I)-catalyzed process limited to structurally simple substrates - into a sophisticated method that has found application in syntheses of highly complex organic molecules. This transformation can further be combined with carbon-carbon bond-forming reactions into domino sequences that allow for a considerable increase of molecular complexity within a single synthetic step. Some recent examples of the development and synthetic applications of these reactions are provided.",
publisher = "Wiley-V C H Verlag Gmbh, Weinheim",
journal = "Israel Journal of Chemistry",
title = "Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications",
volume = "58",
number = "5",
pages = "521-530",
doi = "10.1002/ijch.201700033",
url = "Kon_3487"
}
Bihelović, F., Vulović, B.,& Saičić, R.. (2018). Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications. in Israel Journal of Chemistry
Wiley-V C H Verlag Gmbh, Weinheim., 58(5), 521-530.
https://doi.org/10.1002/ijch.201700033
Kon_3487
Bihelović F, Vulović B, Saičić R. Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications. in Israel Journal of Chemistry. 2018;58(5):521-530.
doi:10.1002/ijch.201700033
Kon_3487 .
Bihelović, Filip, Vulović, Bojan, Saičić, Radomir, "Gold(I)-Catalyzed C-O/C-C Bond-Forming Domino Reactions and Their Synthetic Applications" in Israel Journal of Chemistry, 58, no. 5 (2018):521-530,
https://doi.org/10.1002/ijch.201700033 .,
Kon_3487 .

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