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[11]Novel environmentally sustainable xylitol-based plasticizer: synthesis and application.Journal of Polymer Research,2021
[12]Phosphorus-nitrogen-containing flame-retardant plasticizers derived from L-lactic acid for poly (lactic acid) improved toughness, flame retardancy and crystallization..Chemical Engineering Journal,2024
[13]Synthesis of a phosphorus-containing L-lactic acid-based flame-retardant plasticizer for simultaneously enhancing flexibility and flame retardancy of poly(lactic acid).International Journal of Biological Macromolecules,2024
[14]Synthesis, characterization, and performance evaluation of a high-efficiency fully biobased biodegradable plasticizer.Journal of Applied Polymer Science,2024
[15]Flame-retardant plasticizer derived from renewable acids for poly(Vinyl Chloride) improved toughness and flame retardancy.ACS Applied Polymer Materials,2024
[16]Synthesis of novel L-lactic acid-based plasticizers and their effects on the flexibility, crystallinity, and optical transparency of poly(lactic acid).,2024
[17]Preparation of green biodegradable lactic acid-based flame-retardant plasticizer for simultaneously enhancing flexibility, flame retardancy, and smoke-suppression of poly(lactic acid).Chemical Engineering Journal,2024
[18]Fabrication of highly efficient biodegradable oligomeric lactate flame-retardant plasticizers for ultra-flexible flame-retardant poly (lactic acid) composites.Chemical Engineering Journal,2024
[19]Bio-based flame-retardant plasticizers derived from l-lactic acid: Effects of valence states of phosphorus structure on fire safety, flexibility and transparency of poly(lactic acid).Chemical Engineering Journal
[20]An eco-sustainable, lactic acid-based phosphaphenanthren-containing flame-retardant plasticizer: Synthesis, properties, and mechanism.Chemical Engineering Journal
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