Chunwei Hsu
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Explore the profile of Chunwei Hsu including associated specialties, affiliations and a list of published articles.
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Articles
9
Citations
59
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Recent Articles
1.
Bras T, Hsu C, Baum T, Vogel D, Mayor M, van der Zant H
J Phys Chem C Nanomater Interfaces
. 2025 Feb;
129(6):3152-3157.
PMID: 39968332
Organic radicals are promising candidates for molecular spintronics due to their intrinsic magnetic moment, their low spin-orbit coupling, and their weak hyperfine interactions. Using a mechanically controlled break junction setup...
2.
Hurtado-Gallego J, van der Poel S, Blaschke M, Gallego A, Hsu C, Lopez-Nebreda R, et al.
Nanoscale
. 2024 May;
16(22):10751-10759.
PMID: 38747099
Break-junction techniques provide the possibility to study electric and thermoelectric properties of single-molecule junctions in great detail. These techniques rely on the same principle of controllably breaking metallic contacts in...
3.
Hsu C, Schosser W, Zwick P, Dulic D, Mayor M, Pauly F, et al.
Chem Sci
. 2022 Aug;
13(27):8017-8024.
PMID: 35919422
Intra- and intermolecular interactions are dominating chemical processes, and their concerted interplay enables complex nonequilibrium states like life. While the responsible basic forces are typically investigated spectroscopically, a conductance measurement...
4.
Hsu C, Costi T, Vogel D, Wegeberg C, Mayor M, van der Zant H, et al.
Phys Rev Lett
. 2022 Apr;
128(14):147701.
PMID: 35476482
Probing the universal low-temperature magnetic-field scaling of Kondo-correlated quantum dots via electrical conductance has proved to be experimentally challenging. Here, we show how to probe this in nonlinear thermocurrent spectroscopy...
5.
Schosser W, Hsu C, Zwick P, Beltako K, Dulic D, Mayor M, et al.
Nanoscale
. 2022 Jan;
14(3):984-992.
PMID: 34989747
The possibility to study quantum interference phenomena at ambient conditions is an appealing feature of molecular electronics. By connecting two porphyrins in a cofacial cyclophane, we create an attractive platform...
6.
Pyurbeeva E, Hsu C, Vogel D, Wegeberg C, Mayor M, van der Zant H, et al.
Nano Lett
. 2021 Nov;
21(22):9715-9719.
PMID: 34766782
Single molecules are nanoscale thermodynamic systems with few degrees of freedom. Thus, the knowledge of their entropy can reveal the presence of microscopic electron transfer dynamics that are difficult to...
7.
Reznikova K, Hsu C, Schosser W, Gallego A, Beltako K, Pauly F, et al.
J Am Chem Soc
. 2021 Aug;
143(34):13944-13951.
PMID: 34424713
Quantum interference (QI) of electron waves passing through a single-molecule junction provides a powerful means to influence its electrical properties. Here, we investigate the correlation between substitution pattern, conductance, and...
8.
Gehring P, Sowa J, Hsu C, de Bruijckere J, van der Star M, Le Roy J, et al.
Nat Nanotechnol
. 2021 Mar;
16(4):426-430.
PMID: 33649585
Theoretical studies suggest that mastering the thermocurrent through single molecules can lead to thermoelectric energy harvesters with unprecedentedly high efficiencies. This can be achieved by engineering molecule length, optimizing the...
9.
Zwick P, Hsu C, El Abbassi M, Fuhr O, Fenske D, Dulic D, et al.
J Org Chem
. 2020 Nov;
85(23):15072-15081.
PMID: 33166468
Porphyrin cyclophane , consisting of two rigidly fixed but still movable cofacial porphyrins and exposing acetate-masked thiols in opposed directions of the macrocycle, is designed, synthesized, and characterized. The functional...
10.
Stefani D, Weiland K, Skripnik M, Hsu C, Perrin M, Mayor M, et al.
Nano Lett
. 2018 Aug;
18(9):5981-5988.
PMID: 30134105
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital structure through external stimuli. This can provide functionality on the single-molecule level that can be...