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Volumn 109, Issue 4, 2008, Pages 2426-2433
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A thermal expulsion approach to homogeneous large-volume methacrylate monolith preparation; enabling large-scale rapid purification of biomolecules
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Author keywords
Exothermic; Large volume; Macroporous polymer; Polymerization; Temperature
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Indexed keywords
ABS RESINS;
BIOMOLECULES;
CHEMICAL REACTIONS;
CONCRETE PAVEMENTS;
FREE RADICAL POLYMERIZATION;
FREE RADICALS;
IMAGE SEGMENTATION;
MONOMERS;
POLYMERIZATION;
POLYMERS;
PORE SIZE;
PURIFICATION;
TEMPERATURE SENSORS;
THERMAL GRADIENTS;
ADDITION TECHNIQUES;
BULK POLYMERIZATIONS;
COMBINED HEATS;
EXOTHERMIC;
EXOTHERMS;
INITIATOR DECOMPOSITIONS;
LARGE-VOLUME;
MACROPOROUS POLYMER;
MAXIMUM TEMPERATURES;
METHACRYLATE MONOLITHS;
PORE SIZE DISTRIBUTIONS;
PORE SYSTEMS;
RADIAL TEMPERATURE DISTRIBUTIONS;
RADIAL TEMPERATURE GRADIENTS;
RADIAL TEMPERATURE PROFILES;
RAPID PURIFICATIONS;
STRUCTURAL HETEROGENEITIES;
SYNTHESIS OF;
TERMINAL TEMPERATURES;
MONOLITHIC INTEGRATED CIRCUITS;
MONOMER;
POLYMERIZATION;
PURIFICATION;
SYNTHESIS;
TEMPERATURE EFFECT;
THERMAL PROPERTY;
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EID: 55849090311
PISSN: 00218995
EISSN: 10974628
Source Type: Journal
DOI: 10.1002/app.28346 Document Type: Article |
Times cited : (9)
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References (17)
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