阻燃剂
硼
氢氧化物
烟雾
硼酸锌
层状双氢氧化物
生物地球科学
材料科学
化学工程
无机化学
核化学
化学
地质学
有机化学
复合材料
工程类
地球科学
作者
Ling Shi,Dianqing Li,Jian‐Rong Wang,Sufeng Li,David G. Evans,Xue Duan
标识
DOI:10.1346/ccmn.2005.0530309
摘要
Abstract Reaction of a Mg-Al carbonate layered double hydroxide (LDH) with boric acid leads to a borate-pillared LDH with the stoichiometry [Mg 0.65 Al 0.35 (OH) 2 ][B 3 O 5 ] 0.35 .0.65H 2 O and an interlayer spacing of 1.07 nm. Infrared and 11 B magic angle spinning nuclear magnetic resonance data are consistent with the presence of polymeric triborate anions of the type [B 3 O 4 (OH) 2 ] n n - in the interlayer galleries so that the material can be formulated as [Mg 0.65 Al 0.35 (OH) 2 ][B 3 O 4 (OH) 2 ] 0.35 .0.30H 2 O. The flame-retardant properties of the borate-pillared material and the carbonate precursor in composites with ethylene vinyl acetate copolymer were compared. Introduction of the borate anion leads to a significant enhancement in smoke suppression during combustion without compromising the flammability of the material. This is related to the synergistic effect between the host layers of the LDH and the borate anions uniformly distributed in the interlayer region.
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