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Mn ~40,000

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NIPAM polymer, PNIPAM, Polyacrylamide, polyNIPAM
Linear Formula:
CAS Number:
MDL number:
PubChem Substance ID:

mol wt

Mn 20,000-60,000
Mn ~40,000

Quality Level


96 °C

SMILES string




InChI key


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Thermosensitive polymer, can be used to form a hydrogel. Aqueous polymer solution undergoes a phase transition from a soluble to an insoluble state when the temperature is raised to ca. 32 °C.

Physical form

Thermosensitive polymer, hydrogel

Storage Class

11 - Combustible Solids




Not applicable


Not applicable


Eyeshields, Gloves, type N95 (US)

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Soichi Takagi et al.
Cell transplantation, 21(2-3), 411-420 (2012-07-17)
The de novo engineering of a uniform hepatocyte sheet in vitro is considered as a novel approach for liver-directed therapeutics. Hepatocytes can be cultured on a temperature-responsive culture dishes coated with poly(N-isopropylacrylamide) (PIPAAm). Following multiple days of culturing, the
Umut Atakan Gurkan et al.
Advanced healthcare materials, 1(5), 661-668 (2012-11-28)
Stimuli responsive, smart interface materials are integrated with microfluidic technologies creating new functions for a broad range of biological and clinical applications by controlling the material and cell interactions. Local capture and on-demand local release of cells are demonstrated with
A C C Rotzetter et al.
Advanced materials (Deerfield Beach, Fla.), 24(39), 5352-5356 (2012-08-31)
Buildings can be effectively cooled by a bioinspired sweating-like action based on thermoresponsive hydrogels (PNIPAM), which press out their stored water when exceeding the lower critical solution temperature. The surface temperature is reduced by 15 °C compared to that of
Tatiya Trongsatitkul et al.
Colloids and surfaces. B, Biointerfaces, 103, 244-252 (2012-12-04)
The effect of PEGylation on the thermal response and protein adsorption resistance of crosslinked PNIPAm microgels was investigated. It was found that the presence of PEG, its molecular weight (M(n) 300 and 1100 g/mol) and its concentration (10, 20, and
Hydrophobic interaction-mediated capture and release of cancer cells on thermoresponsive nanostructured surfaces.
Hongliang Liu et al.
Advanced materials (Deerfield Beach, Fla.), 25(6), 922-927 (2012-11-20)

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