基本信息
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Bio
Rint Sijbesma’s research uses supramolecular and dynamic covalent chemistry to develop the next generation of ‘’smart’’ polymers. The development of dynamic and stimuli-responsive materials is one of the central themes in his group. In many projects, the stimulus is mechanical in nature. Self-assembling hydrogels which mimic the mechanical properties of natural fibrous tissues are a highlight in this program. In related research, polymers are studied that respond to a mechanical stimulus by emitting light – thus giving rise to an ultrasensitive tool to report damage at the molecular level. Moreover stress-sensitive catalysts are developed for self-healing materials.
Dynamics and responsiveness also play a main role in a program that uses dynamic covalent chemistry to create adaptive materials such as vitrimers. These materials find application in 3D printing, in coatings and as engineering materials.
Another theme in Sijbesma’s research is the use of self-assembly to create nanostructured polymeric materials. The focus is on the use of columnar liquid crystals to form polymeric films with a high density of monodisperse, nanometer sized pores. In a related activity, columnar liquid crystals are used to develop a new generation of organic ferroelectric materials.
Research Interests
Papers共 319 篇Author StatisticsCo-AuthorSimilar Experts
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Macromoleculesno. 7 (2024): 3368-3375
Ramkrishna Sarkar,Soumabrata Majumdar, Sierd Kuil, Jorg Mallens,Joost J. B. van Der Tol,Rint P. Sijbesma,Johan P. A. Heuts,Anja R. A. Palmans
JOURNAL OF POLYMER SCIENCEno. 13 (2023): 1335-1347
Polymer Chemistry (2023)
MACROMOLECULESno. 11 (2023): 4267-4277
CCS Chemistrypp.1-63, (2023)
ACS APPLIED POLYMER MATERIALSno. 7 (2023): 4689-4697
POLYMER CHEMISTRYno. 37 (2023): 4294-4302
ACS APPLIED POLYMER MATERIALSno. 6 (2023): 4517-4524
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