2023
DOI: 10.1016/j.cej.2023.141775
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Facile construction of organic–inorganic hybrid flame-retardant system based on fully biomass: Improving the fire safety and mechanical property of epoxy resin

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Cited by 13 publications
(4 citation statements)
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“…This work opened a concept-new way to upcycle oyster waste, as high-value flame retardant, with the assistance of ball milling. To improve the flame-retardant ability of oyster wastes, the same group successively used ammonia phytate (PAA) [ 101 ] and chitosan-modified ammonium polyphosphate (CS@APP) [ 102 ] in assisting the ball milling-induced exfoliation of layered oyster wastes. This revealed that the resultant TOSP@PAA and TOSP@CS@APP were of a specific layer-crosslinking structure, by the –NH 3+ –O – P– bonds.…”
Section: Ball Milling-assisted Fabrication Of Flame Retardantsmentioning
confidence: 99%
“…This work opened a concept-new way to upcycle oyster waste, as high-value flame retardant, with the assistance of ball milling. To improve the flame-retardant ability of oyster wastes, the same group successively used ammonia phytate (PAA) [ 101 ] and chitosan-modified ammonium polyphosphate (CS@APP) [ 102 ] in assisting the ball milling-induced exfoliation of layered oyster wastes. This revealed that the resultant TOSP@PAA and TOSP@CS@APP were of a specific layer-crosslinking structure, by the –NH 3+ –O – P– bonds.…”
Section: Ball Milling-assisted Fabrication Of Flame Retardantsmentioning
confidence: 99%
“…Another study sheds light on the simple manufacturing of ecologically friendly flame retardants and investigates a new method to improve the fire safety and mechanical properties of Epoxy resins (EP) [ 30 ].…”
Section: Introductionmentioning
confidence: 99%
“…As reviewed, nanomaterials modified by supramolecular aggregates in conjunction with flame retardants have been in rapid progress in the last few decades. [20][21][22] Hydrogen bonding self-assembly and other interactions offer unique structural properties with a great potential for use in preparing flame retardants based on polymers. Wang et al 12 fabricated multifunctional BN nanosheets by enclosing phytic acid doped polypyrrole shell, followed by adsorbing copper ions to acquire flame-retardant additives into TPU.…”
Section: Introductionmentioning
confidence: 99%
“…In addition, the aggregation of α‐ZrP nanosheets and their adhesion with the polymer matrix are also the problems to solve when they are incorporated into polymers. As reviewed, nanomaterials modified by supramolecular aggregates in conjunction with flame retardants have been in rapid progress in the last few decades 20–22 . Hydrogen bonding self‐assembly and other interactions offer unique structural properties with a great potential for use in preparing flame retardants based on polymers.…”
Section: Introductionmentioning
confidence: 99%