Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse

Cors M, Wrede O, Genix A-C, Anselmetti D, Oberdisse J, Hellweg T (2017)
LANGMUIR 33(27): 6804-6811.

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We study the swelling and shrinking behavior of core shell microgels adsorbed on silicon wafers. In these systems, the core is made of cross-linked poly(Nisopropylmethacrylamide) and the shell consists of cross-linked poly(N-n-propylacrylamide). In suspension, these particles exhibit an extended linear swelling behavior in the temperature interval between the lower critical solution temperatures of the two polymers. Using ellipsometry and atomic force microscopy, we show that this linear response is also observed in the adsorbed state.
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Cors M, Wrede O, Genix A-C, Anselmetti D, Oberdisse J, Hellweg T. Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse. LANGMUIR. 2017;33(27):6804-6811.
Cors, M., Wrede, O., Genix, A. - C., Anselmetti, D., Oberdisse, J., & Hellweg, T. (2017). Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse. LANGMUIR, 33(27), 6804-6811. doi:10.1021/acs.langmuir.7b01199
Cors, M., Wrede, O., Genix, A. - C., Anselmetti, D., Oberdisse, J., and Hellweg, T. (2017). Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse. LANGMUIR 33, 6804-6811.
Cors, M., et al., 2017. Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse. LANGMUIR, 33(27), p 6804-6811.
M. Cors, et al., “Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse”, LANGMUIR, vol. 33, 2017, pp. 6804-6811.
Cors, M., Wrede, O., Genix, A.-C., Anselmetti, D., Oberdisse, J., Hellweg, T.: Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse. LANGMUIR. 33, 6804-6811 (2017).
Cors, Marian, Wrede, Oliver, Genix, Anne-Caroline, Anselmetti, Dario, Oberdisse, Julian, and Hellweg, Thomas. “Core-Shell Microgel-Based Surface Coatings with Linear Thermoresponse”. LANGMUIR 33.27 (2017): 6804-6811.
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Decoupled Thermo- and pH-Responsive Hydrogel Microspheres Cross-Linked by Rotaxane Networks.
Kureha T, Aoki D, Hiroshige S, Iijima K, Aoki D, Takata T, Suzuki D., Angew Chem Int Ed Engl 56(48), 2017
PMID: 28994501

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