Jonas Fransson
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Explore the profile of Jonas Fransson including associated specialties, affiliations and a list of published articles.
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38
Citations
241
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Recent Articles
11.
Sisman A, Fransson J
Phys Rev E
. 2021 Dec;
104(5-1):054110.
PMID: 34942777
Confined systems are usually treated as integer dimensional systems, like two dimensional (2D), 1D, and 0D, by considering extreme confinement conditions in one or more directions. This approach costs piecewise...
12.
Phan-Xuan T, Bogdanova E, Sommertune J, Fureby A, Fransson J, Terry A, et al.
Biochem Biophys Rep
. 2021 Dec;
28:101184.
PMID: 34917778
Although unfolding of protein in the liquid state is relatively well studied, its mechanisms in the solid state, are much less understood. We evaluated the reversibility of thermal unfolding of...
13.
Ramm I, Sanchez-Fernandez A, Choi J, Lang C, Fransson J, Schagerlof H, et al.
Pharmaceutics
. 2021 Nov;
13(11).
PMID: 34834267
The addition of glycerol to protein solutions is often used to hinder the aggregation and denaturation of proteins. However, it is not a generalised practice against chemical degradation reactions. The...
14.
Aydin A, Fransson J, Sisman A
J Phys Condens Matter
. 2021 Oct;
34(2).
PMID: 34654006
Quantum shape effect appears under the size-invariant shape transformations of strongly confined structures. Such a transformation distinctively influences the thermodynamic properties of confined particles. Due to their characteristic geometry, core-shell...
15.
Kamlapure A, Cornils L, Zitko R, Valentyuk M, Mozara R, Pradhan S, et al.
Nano Lett
. 2021 Aug;
21(16):6748-6755.
PMID: 34351781
Mutually interacting magnetic atoms coupled to a superconductor have gained enormous interest due to their potential for the realization of topological superconductivity. Individual magnetic impurities produce states within the superconducting...
16.
Sang Y, Mishra S, Tassinari F, Karuppannan S, Carmieli R, Teo R, et al.
J Phys Chem C Nanomater Interfaces
. 2021 May;
125(18):9875-9883.
PMID: 34055128
The steady-state charge and spin transfer yields were measured for three different Ru-modified azurin derivatives in protein films on silver electrodes. While the charge-transfer yields exhibit weak temperature dependences, consistent...
17.
Fransson J
Nano Lett
. 2021 Mar;
21(7):3026-3032.
PMID: 33759530
Chiral induced spin selectivity is a phenomenon that has been attributed to chirality, spin-orbit interactions, and nonequilibrium conditions, while the role of electron exchange and correlations have been investigated only...
18.
Choi J, Wahlgren M, Ek V, Elofsson U, Fransson J, Nilsson L, et al.
PLoS One
. 2020 Nov;
15(11):e0242605.
PMID: 33232370
Protein-based drugs often require targeted drug delivery for optimal therapy. A successful strategy to increase the circulation time of the protein in the blood is to link the therapeutic protein...
19.
Choi J, Fuentes C, Fransson J, Wahlgren M, Nilsson L
J Chromatogr A
. 2020 Oct;
1633:461625.
PMID: 33128976
Electrical asymmetrical flow field-flow fractionation (EAF4) is an interesting new analytical technique that separates proteins based on size or molecular weight and simultaneously determines the electrical characteristics of each population....
20.
Mondal A, Brown N, Mishra S, Makam P, Wing D, Gilead S, et al.
ACS Nano
. 2020 Oct;
14(12):16624-16633.
PMID: 33095016
Room-temperature, long-range (300 nm), chirality-induced spin-selective electron conduction is found in chiral metal-organic Cu(II) phenylalanine crystals, using magnetic conductive-probe atomic force microscopy. These crystals are found to be also weakly...