Renewable polylactide (PLA) features good biodegradability, high optical transparency and mechanical strength. However, inherent flammability severely restricts its practical applications in packaging, fabric and electronics. Polyphosphoramides have recently demonstrated high fire-retardant effectiveness in PLA, but their synthesis usually involves the use of a large volume of toxic organic solvents, in addition to their negative impacts on the transparency of PLA. Herein, we report a one-pot green solvent-free approach for massively synthesizing a silicon (Si)-containing polyphosphoramide (DM-Si). The results show that with only 1.0 wt% of DM-Si, the resultant PLA material exhibits desirable fire retardancy, e.g., a UL-94 V-0 rating and a ...
The synthesis procedures of the majority of hyperbranched flame retardants (FRs) involve numerous to...
The creation of high-performance polylactic acid (PLA) materials combining excellent mechanical robu...
Polylactide (PLA) is one of the most widely used organic bio-degradable polymers. However, it has po...
Biodegradable and renewable polylactide (PLA) exhibits excellent mechanical properties but is prone ...
Intrinsic flammability significantly impedes practical applications of polylactide (PLA), despite ma...
Polylactide (PLA) derived from renewable resources has drawn great interests in packaging, electroni...
Last years have witnessed great advances in minimizing the flammability of the polylactic acid (PLA)...
The design of flame-retardant biocomposites based on biobased flame retardants (FRs) represents a pr...
The synthesis of bio-based high-efficiency flame retardants in accordance with green and facile meth...
The design of flame-retardant biocomposites based on biobased flame retardants (FRs) represents a pr...
The creation of thermostable, flame-retardant, mechanically robust bioplastics is highly desirable i...
Although the flammability of biodegradable poly(lactic acid) (PLA) has been effectively addressed so...
It has been desirable to create biodegradable polymer materials that are thermally stable, flame- re...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
Biodegradable polylactide (PLA) has been widely utilized in people’s daily lives. In order to improv...
The synthesis procedures of the majority of hyperbranched flame retardants (FRs) involve numerous to...
The creation of high-performance polylactic acid (PLA) materials combining excellent mechanical robu...
Polylactide (PLA) is one of the most widely used organic bio-degradable polymers. However, it has po...
Biodegradable and renewable polylactide (PLA) exhibits excellent mechanical properties but is prone ...
Intrinsic flammability significantly impedes practical applications of polylactide (PLA), despite ma...
Polylactide (PLA) derived from renewable resources has drawn great interests in packaging, electroni...
Last years have witnessed great advances in minimizing the flammability of the polylactic acid (PLA)...
The design of flame-retardant biocomposites based on biobased flame retardants (FRs) represents a pr...
The synthesis of bio-based high-efficiency flame retardants in accordance with green and facile meth...
The design of flame-retardant biocomposites based on biobased flame retardants (FRs) represents a pr...
The creation of thermostable, flame-retardant, mechanically robust bioplastics is highly desirable i...
Although the flammability of biodegradable poly(lactic acid) (PLA) has been effectively addressed so...
It has been desirable to create biodegradable polymer materials that are thermally stable, flame- re...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
Biodegradable polylactide (PLA) has been widely utilized in people’s daily lives. In order to improv...
The synthesis procedures of the majority of hyperbranched flame retardants (FRs) involve numerous to...
The creation of high-performance polylactic acid (PLA) materials combining excellent mechanical robu...
Polylactide (PLA) is one of the most widely used organic bio-degradable polymers. However, it has po...