Stephan Forster
Overview
Explore the profile of Stephan Forster including associated specialties, affiliations and a list of published articles.
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Articles
103
Citations
879
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Recent Articles
1.
Ahmed A, Alegret N, Almeida B, Alvarez-Puebla R, Andrews A, Ballerini L, et al.
ACS Nano
. 2025 Mar;
PMID: 40063703
Interfacing artificial devices with the human brain is the central goal of neurotechnology. Yet, our imaginations are often limited by currently available paradigms and technologies. Suggestions for brain-machine interfaces have...
2.
Denk J, Liao X, Dulle M, Schaffoner S, Forster S, Greiner A, et al.
Mater Horiz
. 2024 Sep;
11(22):5777-5785.
PMID: 39290061
Carbon fibers are highly valued for their lightweight characteristics, outstanding mechanical properties, and cost-efficiency. However, their limited oxidation resistance and low thermomechanical stability in hot air impose constraints on their...
3.
Krause D, Forster B, Dulle M, Kramer S, Bockmann S, Monich C, et al.
Small
. 2024 Sep;
20(49):e2404297.
PMID: 39282822
Polymer solid-state electrolytes offer great promise for battery materials with high energy density, mechanical stability, and improved safety. However, their low ion conductivities have so far limited their potential applications....
4.
Frielinghaus H, Dubey P, Saha D, Shin E, Holderer O, Sengers J, et al.
Nanomaterials (Basel)
. 2024 Jul;
14(13).
PMID: 38998729
While Ising criticality in classical liquids has been firmly established both theoretically and experimentally, much less is known about criticality in liquids in which the growth of the correlation length...
5.
Kim J, Thompson B, Tominaga T, Osawa T, Egami T, Forster S, et al.
ACS Macro Lett
. 2024 May;
13(6):720-725.
PMID: 38804976
The Rouse dynamics of polymer chains in model nanocomposite polyethylene oxide/silica nanoparticles (NPs) was investigated using quasielastic neutron scattering. The apparent Rouse rate of the polymer chains decreases as the...
6.
Murmiliuk A, Iwase H, Kang J, Mohanakumar S, Appavou M, Wood K, et al.
J Colloid Interface Sci
. 2024 Mar;
665:801-813.
PMID: 38555748
The co-assembly of polyelectrolytes (PE) with proteins offers a promising approach for designing complex structures with customizable morphologies, charge distribution, and stability for targeted cargo delivery. However, the complexity of...
7.
Reineke B, Paulus I, Loffelsend S, Yu C, Vinogradov D, Meyer A, et al.
Biofabrication
. 2024 Mar;
16(2).
PMID: 38471160
Bioprinting has evolved into a thriving technology for the fabrication of cell-laden scaffolds. Bioinks are the most critical component for bioprinting. Recently, microgels have been introduced as a very promising...
8.
Lovegrove J, Kent B, Forster S, Garvey C, Stenzel M
Exploration (Beijing)
. 2024 Jan;
3(6):20220075.
PMID: 38264690
The alignment of anisotropic nanoparticles in flow has been used for a range of applications such as the preparation of strong fibres and the assembly of in-plane aligned 1D-nanoobjects that...
9.
Heiden-Hecht T, Wu B, Schwarzer K, Forster S, Kohlbrecher J, Holderer O, et al.
J Colloid Interface Sci
. 2023 Nov;
655:319-326.
PMID: 37948805
Hypothesis: To analyze protein stabilized emulsions, SAXS and SANS are emerging techniques capturing oil droplet radius, interfacial coverage and structure. Protein shape, thus protein structure change during interfacial adsorption with...
10.
Buvalaia E, Kruteva M, Hoffmann I, Radulescu A, Forster S, Biehl R
ACS Macro Lett
. 2023 Aug;
12(9):1218-1223.
PMID: 37624592
Polyelectrolytes (PE) are polymeric macromolecules in aqueous solutions characterized by their chain topology and intrinsic charge in a neutralizing fluid. Structure and dynamics are related to several characteristic screening length...