Shear Thickening Behavior in Injectable Tetra-PEG Hydrogels Cross-Linked via Dynamic Thia-Michael Addition Bonds
Сдвиговое загущение в инъекционных тетра-ПЭГ-гидрогелях, сшитых посредством динамических связей, образованных реакцией тио–Михаэля
2023-09-22
SCID: 54.1/bht3sc82
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dynamic thia-Michael additioninjectable hydrogelsnonlinear rheologyshear thickeningtetra-PEG hydrogels
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Abstract (AI)
Injectable poly(ethylene glycol) (PEG)-based hydrogels were reversibly cross-linked through thia-conjugate addition bonds and demonstrated to shear thicken at low shear rates. Cross-linking bond exchange kinetics and dilute polymer concentrations were leveraged to tune hydrogel plateau moduli (from 60 to 650 Pa) and relaxation times (from 2 to 8 s). Under continuous flow shear rheometry, these properties affected the onset of shear thickening and the degree of shear thickening achieved before a flow instability occurred. The changes in viscosity were reversible whether the shear rate increased or decreased, suggesting that chain stretching drives this behavior. Given the relevance of dynamic PEG hydrogels under shear to biomedical applications, their injectability was investigated. Injection forces were found to increase with higher polymer concentrations and slower bond exchange kinetics. Altogether, these results characterize the nonlinear rheology of dilute, dynamic covalent tetra-PEG hydrogels and offer insight into the mechanism driving their shear thickening behavior.
Key Findings
1
Higher plateau modulus and altered relaxation properties influence shear-thickening onset and the extent of thickening before flow instability.
2
Injectable tetra-PEG hydrogels reversibly cross-linked by dynamic thia-conjugate addition bonds exhibit shear thickening at low shear rates.
3
Injection forces increase with higher polymer concentration and slower dynamic-bond exchange kinetics, informing hydrogel injectability for biomedical use.
4
Varying bond-exchange kinetics and dilute polymer concentration tunes plateau moduli from 60 to 650 Pa and relaxation times from 2 to 8 seconds.
5
Viscosity changes are reversible during both increasing and decreasing shear, supporting chain stretching as the mechanism driving shear thickening.
Research Object
injectable dilute tetra-PEG hydrogels reversibly cross-linked via dynamic thia-Michael addition bonds
Research Subject
shear-thickening behavior and nonlinear rheological response, including the effects of bond-exchange kinetics and polymer concentration on modulus, relaxation, viscosity, flow instability, and injectability
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2023-09-22
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