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Composite microcapsules with enhanced mechanical stability and reduced active ingredient leakage 被引量:6

Composite microcapsules with enhanced mechanical stability and reduced active ingredient leakage
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摘要 A calcium shellac (CS) matrix was used to encapsulate polymeric melamine formaldehyde microcapsules (A) or CaCO3 nanoparticles-stabilized microcapsules (B), both of which encapsulated an oil-based active ingredient, producing A-CS or B-CS composite microcapsules. The mechanical properties and oil release profiles of the composite microcapsules were evaluated. The composite microcapsules showed enhanced mechanical stability and reduced leakage of the active ingredient hv one order of magnitude. A calcium shellac (CS) matrix was used to encapsulate polymeric melamine formaldehyde microcapsules (A) or CaCO3 nanoparticles-stabilized microcapsules (B), both of which encapsulated an oil-based active ingredient, producing A-CS or B-CS composite microcapsules. The mechanical properties and oil release profiles of the composite microcapsules were evaluated. The composite microcapsules showed enhanced mechanical stability and reduced leakage of the active ingredient hv one order of magnitude.
出处 《Particuology》 SCIE EI CAS CSCD 2016年第3期40-46,共7页 颗粒学报(英文版)
关键词 Composite Microcapsule Calcium shellac Mechanical property Control release Perfume oil Composite Microcapsule Calcium shellac Mechanical property Control release Perfume oil
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