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Publications 2020

[1]
S. Garcia Gallego, O. C. J. Andrén and M. Malkoch, "Accelerated Chemoselective Reactions to Sequence-Controlled Heterolayered Dendrimers," Journal of the American Chemical Society, 2020.
[2]
M. Malkoch and S. Garcia-Gallego, "CHAPTER 1 : Introduction to dendrimers and other dendritic polymers," in Monographs in Supramolecular Chemistry, 2020, pp. 1-20.
[3]
M. Malkoch, "CHAPTER 10 : Future outlook for the field of dendrimers and other dendritic polymers," in Monographs in Supramolecular Chemistry, 2020, pp. 287-288.
[4]
M. Malkoch and S. Garcia-Gallego, "Chapter 2 : Bis-MPA dendrimers and other dendritic polyesters," in Dendrimer Chemistry : Synthetic Approaches Towards Complex Architectures, 2020th ed. : Royal Society of Chemistry, 2020, pp. 21-57.
[5]
J. Engström et al., "Core–Shell Nanoparticle Interface and Wetting Properties," Advanced Functional Materials, vol. 30, no. 15, 2020.
[6]
E. C. C. Santos et al., "Current Cellulose Nanofibrils and Cellulose Nanocrystals as Water Purification Functional Membrane Materials," Journal of Environmental Science and Management, pp. 48-64, 2020.
[7]
A. Badria, P. G. Koutsoukos and D. Mavrilas, "Decellularized tissue-engineered heart valves calcification : what do animal and clinical studies tell us?," Journal of materials science. Materials in medicine, vol. 31, no. 12, 2020.
[8]
T. Ingverud et al., "Dendritic Polyampholyte-Assisted Formation of Functional Cellulose Nanofibril Materials," Biomacromolecules, vol. 21, no. 7, pp. 2856-2863, 2020.
[9]
J. V. Kieseritzky et al., "DendroPrime as an adhesion barrier on fracture fixation plates : an experimental study in rabbits," Journal of Hand Surgery, European Volume, vol. 45, no. 7, pp. 742-747, 2020.
[10]
H. Asem, "Design of Functional Polymeric Nanoparticles for Biomedical Applications," Doctoral thesis : KTH Royal Institute of Technology, TRITA-CBH-FOU, 2020:7, 2020.
[11]
N. Hendrikse, "Engineering enzymes towards biotherapeutic applications using ancestral sequence reconstruction," Doctoral thesis Stockholm, Sweden : KTH Royal Institute of Technology, TRITA-CBH-FOU, 2020:33, 2020.
[13]
F. C. Löhrer et al., "Following in Situ the Deposition of Gold Electrodes on Low Band Gap Polymer Films," ACS Applied Materials and Interfaces, vol. 12, no. 1, pp. 1132-1141, 2020.
[16]
W. Farhat et al., "Lactone monomers obtained by enzyme catalysis and their use in reversible thermoresponsive networks," Journal of Applied Polymer Science, vol. 137, no. 18, 2020.
[17]
M. Jawerth et al., "Mechanical and Morphological Properties of Lignin-Based Thermosets," ACS APPLIED POLYMER MATERIALS, vol. 2, no. 2, pp. 668-676, 2020.
[18]
M. Lüchow, L. Fortuin and M. Malkoch, "Modular, synthetic, thiol-ene mediated hydrogel networks as potential scaffolds for 3D cell cultures and tissue regeneration," Journal of Polymer Science, vol. 58, no. 22, pp. 3153-3164, 2020.
[20]
P. Stenström, "Polyester dendrimers for biomedical applications," Doctoral thesis : KTH Royal Institute of Technology, TRITA-CBH-FOU, 2020:21, 2020.
[22]
C. J. Brett et al., "Revealing structural evolution occurring from photo-initiated polymer network formation," Communications Chemistry, vol. 3, no. 1, 2020.
[24]