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Volumn 327, Issue 2, 2008, Pages 333-340
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Aggregation and gelation in hydroxypropylmethyl cellulose aqueous solutions
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Author keywords
Gelation mechanism; Hydroxypropylmethyl cellulose; Micropolarity index; Rheology
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Indexed keywords
AGGLOMERATION;
CELLULOSE;
CELLULOSE DERIVATIVES;
COAGULATION;
COLLOIDS;
GELATION;
HEATING;
HYDROPHOBICITY;
NETWORK PROTOCOLS;
POLYMERS;
RHEOLOGY;
SENSOR NETWORKS;
SHEAR DEFORMATION;
SHEAR FLOW;
SOLUTIONS;
STRAIN RATE;
THREE DIMENSIONAL;
AQUEOUS SOLUTIONS;
CROSS LINKS;
GEL FORMATION;
GELATION MECHANISM;
HIGHER TEMPERATURES;
HYDROXYPROPYLMETHYL CELLULOSE;
LARGE STRAINS;
MICRO-POLARITY;
MICROPOLARITY INDEX;
NON-NEWTONIAN;
POLARIZED LIGHT MICROSCOPY;
POLYMER CHAINS;
REPTATION;
RHEOLOGICAL BEHAVIORS;
ROOM TEMPERATURES;
SHEAR EFFECTS;
SHEAR RATES;
SMALL STRAINS;
SPECTROSCOPIC TECHNIQUES;
THREE-DIMENSIONAL NETWORKS;
ABS RESINS;
HYDROXYPROPYLMETHYLCELLULOSE;
POLYMER;
AQUEOUS SOLUTION;
ARTICLE;
FLOW KINETICS;
FLUORESCENCE SPECTROSCOPY;
GELATION;
HEATING;
HYDROPHOBICITY;
MICROSCOPY;
PRIORITY JOURNAL;
ROOM TEMPERATURE;
THERMAL ANALYSIS;
ULTRAVIOLET SPECTROSCOPY;
GELS;
HYDROPHOBICITY;
METHYLCELLULOSE;
MICROSCOPY, POLARIZATION;
OSCILLOMETRY;
PYRENES;
RHEOLOGY;
SOLUTIONS;
SPECTROMETRY, FLUORESCENCE;
TEMPERATURE;
VISCOSITY;
WATER;
AGGLOMERATION;
CELLULOSE DERIVATIVES;
COAGULATION;
COLLOIDS;
DEFORMATION;
GELATION;
RHEOLOGY;
SHEAR FLOW;
STRAINS;
WATER REPELLENCE;
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EID: 53149103167
PISSN: 00219797
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jcis.2008.08.056 Document Type: Article |
Times cited : (107)
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References (36)
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