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Minna Hakkarainen
Minna Hakkarainen
Неизвестная организация
Подтвержден адрес электронной почты в домене kth.se
Название
Процитировано
Процитировано
Год
From lactic acid to poly (lactic acid)(PLA): characterization and analysis of PLA and its precursors
S Inkinen, M Hakkarainen, AC Albertsson, A Södergård
Biomacromolecules 12 (3), 523-532, 2011
7982011
Aliphatic polyesters: abiotic and biotic degradation and degradation products
M Hakkarainen
Degradable aliphatic polyesters, 113-138, 2002
3852002
Degradable polyethylene: fantasy or reality
PK Roy, M Hakkarainen, IK Varma, AC Albertsson
Environmental science & technology 45 (10), 4217-4227, 2011
3452011
Designed to degrade
AC Albertsson, M Hakkarainen
Science 358 (6365), 872-873, 2017
3392017
Weight losses and molecular weight changes correlated with the evolution of hydroxyacids in simulated in vivo degradation of homo-and copolymers of PLA and PGA
M Hakkarainen, AC Albertsson, S Karlsson
Polymer degradation and stability 52 (3), 283-291, 1996
3071996
Environmental degradation of polyethylene
M Hakkarainen, AC Albertsson
Long term properties of polyolefins, 177-200, 2004
2352004
Sustainable polymers
AK Mohanty, F Wu, R Mincheva, M Hakkarainen, JM Raquez, ...
Nature Reviews Methods Primers 2 (1), 46, 2022
1952022
Rapid (bio) degradation of polylactide by mixed culture of compost microorganisms—low molecular weight products and matrix changes
M Hakkarainen, S Karlsson, AC Albertsson
Polymer 41 (7), 2331-2338, 2000
1952000
Molecular weight changes and polymeric matrix changes correlated with the formation of degradation products in biodegraded polyethylene
AC Albertsson, B Erlandsson, M Hakkarainen, S Karlsson
Journal of environmental polymer degradation 6 (4), 187-195, 1998
1821998
Degradable or not? Cellulose acetate as a model for complicated interplay between structure, environment and degradation
N Yadav, M Hakkarainen
Chemosphere 265, 128731, 2021
1742021
Polylactide stereocomplexation leads to higher hydrolytic stability but more acidic hydrolysis product pattern
SR Andersson, M Hakkarainen, S Inkinen, A Södergård, AC Albertsson
Biomacromolecules 11 (4), 1067-1073, 2010
1722010
Recent progress on parylene C polymer for biomedical applications: A review
M Golda-Cepa, K Engvall, M Hakkarainen, A Kotarba
Progress in Organic Coatings 140, 105493, 2020
1662020
Trash to treasure: microwave-assisted conversion of polyethylene to functional chemicals
E Bäckström, K Odelius, M Hakkarainen
Industrial & Engineering Chemistry Research 56 (50), 14814-14821, 2017
1542017
Carbon dot/polymer nanocomposites: From green synthesis to energy, environmental and biomedical applications
Z Feng, KH Adolfsson, Y Xu, H Fang, M Hakkarainen, M Wu
Sustainable materials and technologies 29, e00304, 2021
1452021
Porosity and pore size regulate the degradation product profile of polylactide
K Odelius, A Hoglund, S Kumar, M Hakkarainen, AK Ghosh, N Bhatnagar, ...
Biomacromolecules 12 (4), 1250-1258, 2011
1452011
Microwave heating causes rapid degradation of antioxidants in polypropylene packaging, leading to greatly increased specific migration to food simulants as shown by ESI-MS and …
J Alin, M Hakkarainen
Journal of Agricultural and Food Chemistry 59 (10), 5418-5427, 2011
1422011
Rapid physicochemical changes in microplastic induced by biofilm formation
E McGivney, L Cederholm, A Barth, M Hakkarainen, E Hamacher-Barth, ...
Frontiers in Bioengineering and Biotechnology 8, 205, 2020
1392020
Oligomeric isosorbide esters as alternative renewable resource plasticizers for PVC
B Yin, M Hakkarainen
Journal of Applied Polymer Science 119 (4), 2400-2407, 2011
1392011
Environmentally friendly plasticizers for poly (vinyl chloride)—Improved mechanical properties and compatibility by using branched poly (butylene adipate) as a polymeric …
A Lindström, M Hakkarainen
Journal of applied polymer science 100 (3), 2180-2188, 2006
1362006
Cationic UV-curing of epoxidized biobased resins
C Noè, M Hakkarainen, M Sangermano
Polymers 13 (1), 89, 2020
1222020
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Статьи 1–20