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Juan I Padron

Explore the profile of Juan I Padron including associated specialties, affiliations and a list of published articles. Areas
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Articles 33
Citations 124
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Recent Articles
1.
Rodriguez H, Cruz D, Lavin V, Padron J, Lorenzo-Luis P
Dalton Trans . 2024 Oct; 53(45):18099-18103. PMID: 39466644
This research embarked on the study of a new binaphthyl phosphate scaffold of copper. There are two independent neutral complexes in the asymmetric unit: Cu1/Cu2 (I) and Cu3/Cu4 (II) from...
2.
Quintana V, Gonzalez-Bakker A, Khan A, Padron J, Davyt D, Padron J, et al.
Arch Pharm (Weinheim) . 2024 Aug; 357(11):e2400431. PMID: 39105404
A series of new hybrid compounds was prepared combining tetrahydropyran rings with different aromatic systems by means of a 1,2,3-triazole, using a building block strategy. The design of these structures...
3.
Rodriguez H, Cruz D, Padron J, Fernandez I
J Org Chem . 2023 Jul; 88(15):11102-11110. PMID: 37485981
The physical factors governing the catalysis in Lewis acid-promoted carbonyl-ene reactions have been explored in detail quantum chemically. It is found that the binding of a Lewis acid to the...
4.
Sinka V, Fernandez I, Padron J
J Org Chem . 2022 Aug; 87(17):11735-11742. PMID: 35977416
A new methodology for the synthesis of seven-membered unsaturated azacycles (tetrahydroazepines) was developed. It is based on the powerful aza-Prins cyclization in combination with the Peterson-type elimination reaction. In a...
5.
Carballo R, Padron J, Fernandez I, Cruz D, Grmusa L, Martin V, et al.
J Org Chem . 2022 Aug; 87(16):11000-11006. PMID: 35921221
A direct, catalytic, and complementary method to obtain 2-substituted homoallyl sulfonyl amides is described, starting from sulfonyl amides, aldehydes, and allyltrimethylsilane using iron(III) chloride as a sustainable catalyst. The scope...
6.
Sinka V, Cruz D, Martin V, Padron J
Org Lett . 2022 Jul; 24(29):5271-5275. PMID: 35834432
The shortest enantioselective total syntheses of (+)-isolaurepinnacin and (+)-neoisoprelaurefucin have been accomplished. These syntheses were based on a common parallel synthetic strategy using Prins-Peterson cyclization in their core construction. In...
7.
Cruz D, Sinka V, de Armas P, Steingruber H, Fernandez I, Martin V, et al.
Org Lett . 2021 Jul; 23(15):6105-6109. PMID: 34318671
A new method that allows the complete control of the regioselectivity of the hydrobromination reaction of alkenes is described. Herein, we report a radical procedure with TMSBr and oxygen as...
8.
Cruz D, Sinka V, Martin V, Padron J
J Org Chem . 2018 Sep; 83(20):12632-12647. PMID: 30252471
A direct iron(III)-catalyzed Prins-Peterson reaction involving α-substituted γ-triphenylsilyl bis-homoallylic alcohols and aldehydes is described. Thus, cis-Δ-2,7-disubstituted oxepenes were synthesized in a diastereoselective reaction using sustainable catalytic conditions (3-5 mol %)....
9.
Scoccia J, Perez S, Sinka V, Cruz D, Lopez-Soria J, Fernandez I, et al.
Org Lett . 2017 Sep; 19(18):4834-4837. PMID: 28858515
A new, direct, and diastereoselective synthesis of activated 2,3,4,6-tetrasubstituted tetrahydro-2H-pyrans is described. In this reaction, iron(III) catalyzed an S2'-Prins cyclization tandem process leading to the creation of three new stereocenters...
10.
Perez S, Purino M, Cruz D, Lopez-Soria J, Carballo R, Ramirez M, et al.
Chemistry . 2016 Sep; 22(43):15529-15535. PMID: 27624405
A highly efficient, diastereoselective, iron(III)-catalyzed intramolecular hydroamination/cyclization reaction involving α-substituted amino alkenes is described. Thus, enantiopure trans-2,5-disubstituted pyrrolidines and trans-5-substituted proline derivatives were synthesized by means of a combination of...