Eva Malmstrom
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Explore the profile of Eva Malmstrom including associated specialties, affiliations and a list of published articles.
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50
Citations
251
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Recent Articles
1.
Jerlhagen A, Gordeyeva K, Cattaruzza M, Brandt L, Sochor B, Koyiloth Vayalil S, et al.
Nanoscale
. 2025 Mar;
PMID: 40070204
Biobased cellulose nanofibrils (CNFs) constitute important building blocks for biomimetic, nanostructured materials, and considerable potential exists in their hybridization with tailorable polymeric nanoparticles. CNFs naturally assemble into oriented, fibrillar structures...
2.
Avella A, Telaretti Leggieri M, Alexakis A, Malmstrom E, Lo Re G
ACS Appl Mater Interfaces
. 2024 Dec;
17(1):2602-2614.
PMID: 39715458
The full exploitation of the outstanding mechanical properties of cellulose nanofibrils (CNFs) as potential reinforcements in nanocomposite materials is limited by the poor interactions at the CNF-polymer matrix interface. Within...
3.
Jerlhagen A, Wilson O, Malmstrom E
ACS Macro Lett
. 2024 Apr;
13(5):565-570.
PMID: 38636106
Self-catalyzed hydrolysis upon storage of the common RAFT chain-transfer agent (CTA) 4-cyano-4-[(thiothiopropyl)sulfanyl] pentanoic acid (CTPPA) is confirmed, where the nitrile group is transformed into an amide by catalysis from the...
4.
Alexakis A, Ayyachi T, Mousa M, Olsen P, Malmstrom E
Polymers (Basel)
. 2023 May;
15(9).
PMID: 37177314
To address the increasing demand for biobased materials, lignin-derived ferulic acid (FA) is a promising candidate. In this study, an FA-derived styrene-like monomer, referred to as 2-methoxy-4-vinylphenol (MVP), was used...
5.
Alexakis A, Telaretti Leggieri M, Wagberg L, Malmstrom E, Benselfelt T
J Colloid Interface Sci
. 2022 Dec;
634:610-620.
PMID: 36549209
Hypothesis: It is theoretically predicted and hypothesized that the charge density and size of spherical nanoparticles are the key factors for their adsorption onto oppositely charged surfaces. It is also...
6.
Finnveden M, Brannstrom S, Johansson M, Malmstrom E, Martinelle M
RSC Adv
. 2022 May;
8(44):24716-24723.
PMID: 35542160
Increased environmental awareness has led to a demand for sustainable, bio-based materials. Consequently, the development of new benign synthesis pathways utilizing a minimum of reaction steps and available bio-based building...
7.
Stamm A, Ohlin J, Mosbech C, Olsen P, Guo B, Soderberg E, et al.
JACS Au
. 2021 Dec;
1(11):1949-1960.
PMID: 34849510
Generation of renewable polymers is a long-standing goal toward reaching a more sustainable society, but building blocks in biomass can be incompatible with desired polymerization type, hampering the full implementation...
8.
Pezzana L, Malmstrom E, Johansson M, Sangermano M
Polymers (Basel)
. 2021 Jun;
13(9).
PMID: 34068798
Bio-based monomers represent the future market for polymer chemistry, since the political economics of different states promote green ventures toward more sustainable materials and processes. Industrial pulp and paper processing...
9.
Westlund R, Carlmark A, Hult A, Malmstrom E, Saez I
Soft Matter
. 2020 Sep;
3(7):866-871.
PMID: 32900079
Immobilizing liquid crystalline polymers on cellulose generates new possibilities of accomplishing addressable/responsive bio-based substrates. In this paper we report on our first steps to combine the electro-optic properties of liquid...
10.
Griveau L, Delorme J, Engstrom J, Dugas P, Carlmark A, Malmstrom E, et al.
Biomacromolecules
. 2020 Jun;
21(11):4479-4491.
PMID: 32551526
The combination of cellulose nanocrystals (CNCs) and poly(ethylene glycol) methyl ether methacrylate (PEGMA) was evaluated to synthesize stable latexes by surfactant-free emulsion polymerization of methyl methacrylate (MMA). Cellulose-particle interaction was...