» Authors » Dirk Leifert

Dirk Leifert

Explore the profile of Dirk Leifert including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 16
Citations 210
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Banjare S, Lezius L, Horst E, Leifert D, Daniliuc C, Alasmary F, et al.
Angew Chem Int Ed Engl . 2024 Apr; 63(30):e202404275. PMID: 38687058
Herein, we present a radical cascade addition cyclization sequence to access quinoline-based benzophosphole oxides from ortho-alkynylated aromatic phosphine oxides using various aryl isonitriles as radical acceptors and inexpensive tert-butyl-hydroperoxide (TBHP)...
2.
Banjare S, Leifert D, Weidlich F, Daniliuc C, Alasmary F, Studer A
Org Lett . 2023 Aug; 25(34):6424-6428. PMID: 37610878
An oxidative radical cascade addition cyclization approach for the synthesis of quinoline-based π-extended polyheterocyclic compounds is reported. Eco-friendly iron catalysis and inexpensive -butylhydroperoxide (TBHP) as the oxidant have been utilized...
3.
Leifert D, Studer A
Chem Rev . 2023 Aug; 123(16):10302-10380. PMID: 37578429
Nitroxides, also known as nitroxyl radicals, are long-lived or stable radicals with the general structure RRN-O. The spin distribution over the nitroxide N and O atoms contributes to the thermodynamic...
4.
Drennhaus T, Leifert D, Lammert J, Drennhaus J, Bergander K, Daniliuc C, et al.
J Am Chem Soc . 2023 Apr; 145(15):8665-8676. PMID: 37029692
Enantioenriched chiral indoles are of high interest for the pharmaceutical and agrochemical industries. Herein, we present an asymmetric Fukuyama indole synthesis through a mild and efficient radical cascade reaction to...
5.
Leifert D, Weidlich F, Adler F, Daniliuc C, Alasmary F, Studer A
Org Lett . 2021 Dec; 24(1):284-288. PMID: 34898229
A radical cascade to 2,3-disubstituted indoles proceeding via acylation or trifluoromethylation of -alkynylphenyl isonitriles is presented. In these cascades, two C-C bonds and one C-O bond are formed using an...
6.
Lill A, Cao D, Schrock M, Vollbrecht J, Huang J, Nguyen-Dang T, et al.
Adv Mater . 2020 Jul; 32(33):e1908120. PMID: 32656778
PCPDTBT-SO K (CPE-K), a conjugated polyelectrolyte, is presented as a mixed conductor material that can be used to fabricate high transconductance accumulation mode organic electrochemical transistors (OECTs). OECTs are utilized...
7.
Leifert D, Moreland A, Limwongyut J, Mikhailovsky A, Bazan G
Angew Chem Int Ed Engl . 2020 Jun; 59(46):20333-20337. PMID: 32596843
The synthesis of a new conjugated oligoelectrolyte (COE), namely DSAzB, is described, which contains a conjugated core bearing a diazene moiety in the center of its electronically delocalized structure. Similar...
8.
McCuskey S, Su Y, Leifert D, Moreland A, Bazan G
Adv Mater . 2020 Apr; 32(24):e1908178. PMID: 32347632
Composites, in which two or more material elements are combined to provide properties unattainable by single components, have a historical record dating to ancient times. Few include a living microbial...
9.
Yurash B, Cao D, Brus V, Leifert D, Wang M, Dixon A, et al.
Nat Mater . 2019 Sep; 18(12):1327-1334. PMID: 31527809
Precise doping of organic semiconductors allows control over the conductivity of these materials, an essential parameter in electronic applications. Although Lewis acids have recently shown promise as dopants for solution-processed...
10.
Leifert D, Studer A
Angew Chem Int Ed Engl . 2019 May; 59(1):74-108. PMID: 31116479
Radical-radical couplings are mostly nearly diffusion-controlled processes. Therefore, the selective cross-coupling of two different radicals is challenging and not a synthetically valuable transformation. However, if the radicals have different lifetimes...