TY - JOUR
T1 - Fire-safe epoxy composite realized by MXenes based nanostructure with vertically arrayed MOFs derived from interfacial assembly strategy
AU - Yu, Shui
AU - Cheng, Chao
AU - Li, Keji
AU - Wang, Junling
AU - Wang, Zhirong
AU - Zhou, Haobo
AU - Wang, Wei
AU - Zhang, Yan
AU - Quan, Yan
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/6/1
Y1 - 2023/6/1
N2 - In this contribution, Ni-based metal organic frameworks (Ni-MOF) nanosheets with high specific surface area are grown on transition metals carbides (MXenes, denoted as MX) surface via vertical alignment, gestating the flame retardant of MX@MOF-B. With the addition of 2.0 wt% MX@MOF-B, the peak heat release rate, peak smoke production rate, peak CO production rate, peak CO2 production rate are reduced by 42.5 %, 26.7 %, 37.8 %, 54.9 %, while the peak concentrations of C2H6, CH4, HCN, NO, N2O are impaired by 91.3 %, 94.3 %, 89.6 %, 90.3 %, 60.9 %, suggesting the enhanced fire safety. Meantime, the fire performance index is elevated by 83.0 % and fire growth index is reduced by 37.2 %, demonstrating the promoted fire safety. Of note, the using of MX@MOF-B induces the promotion of 787.1 % in char yield after combustion, which shows higher graphitized degree and thus enables better protection for basal matrix. Flame retardation contrast with previous works also manifests the strength of MX@MOF-B in hindering the heat release and toxicants emission. This work offers a new paradigm for forging fire-safe polymer composites with low toxicity.
AB - In this contribution, Ni-based metal organic frameworks (Ni-MOF) nanosheets with high specific surface area are grown on transition metals carbides (MXenes, denoted as MX) surface via vertical alignment, gestating the flame retardant of MX@MOF-B. With the addition of 2.0 wt% MX@MOF-B, the peak heat release rate, peak smoke production rate, peak CO production rate, peak CO2 production rate are reduced by 42.5 %, 26.7 %, 37.8 %, 54.9 %, while the peak concentrations of C2H6, CH4, HCN, NO, N2O are impaired by 91.3 %, 94.3 %, 89.6 %, 90.3 %, 60.9 %, suggesting the enhanced fire safety. Meantime, the fire performance index is elevated by 83.0 % and fire growth index is reduced by 37.2 %, demonstrating the promoted fire safety. Of note, the using of MX@MOF-B induces the promotion of 787.1 % in char yield after combustion, which shows higher graphitized degree and thus enables better protection for basal matrix. Flame retardation contrast with previous works also manifests the strength of MX@MOF-B in hindering the heat release and toxicants emission. This work offers a new paradigm for forging fire-safe polymer composites with low toxicity.
KW - Epoxy resin
KW - Flame retardant
KW - Metal organic frameworks
KW - Transition metals carbides
UR - http://www.scopus.com/inward/record.url?scp=85152736932&partnerID=8YFLogxK
U2 - 10.1016/j.cej.2023.143039
DO - 10.1016/j.cej.2023.143039
M3 - 文章
AN - SCOPUS:85152736932
SN - 1385-8947
VL - 465
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
M1 - 143039
ER -