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Volumn 21, Issue 18, 2011, Pages 6584-6594
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Flame retardancy materials based on a novel fully end-capped hyperbranched polysiloxane and bismaleimide/diallylbisphenol A resin with simultaneously improved integrated performance
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Author keywords
[No Author keywords available]
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Indexed keywords
AMINOPROPYL;
BISMALEIMIDE RESINS;
BISPHENOL A;
BRANCHING DEGREE;
CONDENSED PHASE;
CONTROLLED HYDROLYSIS;
FLAME RETARDANCY;
FOURIER TRANSFORM INFRARED;
HEAT AND MASS TRANSFER;
HEAT RELEASE RATES;
HIGH-PERFORMANCE RESINS;
HYPERBRANCHED;
MOISTURE RESISTANCE;
NEW APPROACHES;
NONCOMBUSTIBLE GAS;
PHENYLTRIMETHOXYSILANES;
POLYSILOXANES;
RETARDING MECHANISM;
THERMAL RESISTANCE;
THERMAL STABILITY;
TOTAL HEAT RELEASE;
TRIETHOXYSILANE;
CHROMATOGRAPHIC ANALYSIS;
DIELECTRIC PROPERTIES;
FLAME RESISTANCE;
FOURIER TRANSFORMS;
IMPACT STRENGTH;
MASS TRANSFER;
NUCLEAR MAGNETIC RESONANCE;
PHENOLS;
POLYMER BLENDS;
RESONANCE;
SILANES;
SILICONES;
RESINS;
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EID: 79955050518
PISSN: 09599428
EISSN: 13645501
Source Type: Journal
DOI: 10.1039/c1jm10233h Document Type: Article |
Times cited : (119)
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References (51)
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