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Volumn 70, Issue 1-2, 2011, Pages 67-73
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Carboxymethyl tamarind gum-silica nanohybrids for effective immobilization of amylase
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Author keywords
Amylase; CMT Si nanohybrids; Enzyme kinetics; Immobilization impregnation
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Indexed keywords
BET ANALYSIS;
CALCINATION TEMPERATURE;
CARBOXYMETHYL;
CATALYTIC PROPERTIES;
CMT-SI NANOHYBRIDS;
ENZYME CONCENTRATIONS;
FREE ENZYME;
FTIR;
HYDROLYSIS REACTION;
IMMOBILIZATION EFFICIENCY;
IMMOBILIZATION/IMPREGNATION;
MATRIX;
NANOHYBRIDS;
NITROGEN ATMOSPHERES;
OPTIMUM PH;
PH VALUE;
POTATO STARCHES;
SEM;
SOL-GEL POLYMERIZATION;
STARCH HYDROLYSIS;
TAMARIND GUM;
TETRAMETHOXYSILANE;
XRD;
ATMOSPHERIC TEMPERATURE;
CALCINATION;
ENZYME ACTIVITY;
ENZYME IMMOBILIZATION;
ENZYME KINETICS;
ENZYMES;
GLUCOSE;
HYDROLASES;
HYDROLYSIS;
METHANOL;
NANOSTRUCTURED MATERIALS;
PH EFFECTS;
REACTION KINETICS;
SILICA;
STARCH;
AMYLASES;
AMYLASE;
CARBOXYMETHYL TAMARIND GUM;
METHANOL;
POLYSACCHARIDE;
POTATO STARCH;
SILICON DIOXIDE;
TETRAMETHOXYSILANE;
UNCLASSIFIED DRUG;
WATER;
ARTICLE;
ATMOSPHERE;
BINDING AFFINITY;
BIOCATALYSIS;
CATALYSIS;
ENZYME ACTIVITY;
ENZYME IMMOBILIZATION;
ENZYME STABILITY;
HYDROLYSIS;
INFRARED SPECTROSCOPY;
PH;
POLYMERIZATION;
SCANNING ELECTRON MICROSCOPY;
TAMARIND;
TEMPERATURE;
THERMOGRAVIMETRY;
THERMOSTABILITY;
X RAY DIFFRACTION;
SOLANUM TUBEROSUM;
TAMARINDUS INDICA;
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EID: 79952818416
PISSN: 13811177
EISSN: None
Source Type: Journal
DOI: 10.1016/j.molcatb.2011.02.006 Document Type: Article |
Times cited : (43)
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References (51)
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