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Rana Alimohammadzadeh

Explore the profile of Rana Alimohammadzadeh including associated specialties, affiliations and a list of published articles. Areas
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Articles 6
Citations 20
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Recent Articles
1.
Rafi A, Deiana L, Alimohammadzadeh R, Engstrand P, Granfeldt T, Nystrom S, et al.
ACS Sustain Resour Manag . 2025 Jan; 1(12):2554-2563. PMID: 39741584
There is a growing demand for the utilization of sustainable materials, such as cellulose-based alternatives, over fossil-based materials. However, the inherent drawbacks of cellulosic materials, such as extremely low wet...
2.
Rafi A, Alimohammadzadeh R, Avella A, Moistlik T, Jurisoo M, Kaaver A, et al.
Sci Rep . 2023 Sep; 13(1):14730. PMID: 37679445
Celulose nanofibers are lightweight, recycable, biodegradable, and renewable. Hence, there is a great interest of using them instead of fossil-based components in new materials and biocomposites. In this study, we...
3.
Alimohammadzadeh R, Sanhueza I, Cordova A
Sci Rep . 2023 Feb; 13(1):3157. PMID: 36823204
Cellulose nanocrystals, which have unique properties of high aspect ratio, high surface area, high mechanical strength, and a liquid crystalline nature, constitute a renewable nanomaterial with great potential for several...
4.
Alimohammadzadeh R, Medina L, Deiana L, Berglund L, Cordova A
ACS Omega . 2020 Aug; 5(31):19363-19370. PMID: 32803029
Development of surface-engineering strategies, which are facile, versatile, and mild, are highly desirable in tailor-made functionalization of high-performance bioinspired nanocomposites. We herein disclose for the first time a general organocatalytic...
5.
Alimohammadzadeh R, Osong S, Rafi A, Dahlstrom C, Cordova A
Glob Chall . 2019 Oct; 3(7):1900018. PMID: 31565387
A sustainable strategy for synergistic surface engineering of lignocellulose and cellulose fibers derived from wood by synergistic combination of metal-free catalysis and renewable polyelectrolyte (PE) complexes is disclosed. The strategy...
6.
Afewerki S, Alimohammadzadeh R, Osong S, Tai C, Engstrand P, Cordova A
Glob Chall . 2019 Oct; 1(7):1700045. PMID: 31565287
This study describes a novel sustainable concept for the scalable direct fabrication and functionalization of nanocellulose from wood pulp with reduced energy consumption. A central concept is the use of...