F
Felix Hennersdorf
Researcher at Dresden University of Technology
Publications - 54
Citations - 1810
Felix Hennersdorf is an academic researcher from Dresden University of Technology. The author has contributed to research in topics: Trifluoromethanesulfonate & Chemistry. The author has an hindex of 17, co-authored 49 publications receiving 1523 citations. Previous affiliations of Felix Hennersdorf include Leipzig University & Monash University, Clayton campus.
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Journal ArticleDOI
Exploration of pyrazine-embedded antiaromatic polycyclic hydrocarbons generated by solution and on-surface azomethine ylide homocoupling
Xiao-Ye Wang,Marcus Richter,Yuanqin He,Jonas Björk,Alexander Riss,Raju Rajesh,Manuela Garnica,Felix Hennersdorf,Jan J. Weigand,Akimitsu Narita,Reinhard Berger,Xinliang Feng,Willi Auwärter,Johannes V. Barth,Carlos-Andres Palma,Klaus Müllen +15 more
TL;DR: In this paper, azomethine ylide homocoupling is used to insert an antiaromatic pyrazine ring into the core of a nanographene, and characterize the molecule's unique electronic character.
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Helical Nanographenes Containing an Azulene Unit: Synthesis, Crystal Structures, and Properties
Ji Ma,Yubin Fu,Evgenia Dmitrieva,Fupin Liu,Hartmut Komber,Felix Hennersdorf,Alexey A. Popov,Jan J. Weigand,Junzhi Liu,Xinliang Feng +9 more
TL;DR: This study provides a novel synthetic strategy for helical nanographenes containing azulene units as well as their associated structures and physical properties.
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Toward Full Zigzag-Edged Nanographenes: peri-Tetracene and Its Corresponding Circumanthracene.
M. R. Ajayakumar,Yubin Fu,Ji Ma,Felix Hennersdorf,Hartmut Komber,Jan J. Weigand,A. Alfonsov,Alexey A. Popov,Reinhard Berger,Junzhi Liu,Klaus Müllen,Xinliang Feng +11 more
TL;DR: The synthesis and characterization of the hitherto unknown 4-PA is demonstrated by a rational strategy in which steric protection of the zigzag edges playing a pivotal role, and it exhibits remarkable persistent stability with a half-life time of ∼3 h under ambient conditions.
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Cationic Nitrogen-Doped Helical Nanographenes.
Kun Xu,Yubin Fu,Youjia Zhou,Felix Hennersdorf,Peter Machata,Ilka Vincon,Jan J. Weigand,Alexey A. Popov,Reinhard Berger,Xinliang Feng +9 more
TL;DR: The design and synthesis of a series of novel cationic nitrogen-doped nanographenes (CNDNs) with nonplanar geometry and axial chirality with energetically lower lying orbitals are reported.
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Chiral Phosphapalladacycles as Efficient Catalysts for the Asymmetric Hydrophosphination of Substituted Methylidenemalonate Esters: Direct Access to Functionalized Tertiary Chiral Phosphines
TL;DR: Screening of three easily accessible C,N and C,P palladacycles as catalysts for this synthetic scenario provided insights into critical factors in catalyst design that influence the activation and stereochemistry in Pd(II)-catalyzed asymmetric P–H addition reactions involving such activated substrates.