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Al(OH)₃ 低聚物聚合机制的机理研究。

Mechanistic investigations of Al(OH)₃ oligomerization mechanisms.

机构信息

School of Chemistry and Chemical Engineering, Taishan University, Tai'an 271021, China.

出版信息

J Mol Model. 2013 Apr;19(4):1565-72. doi: 10.1007/s00894-012-1718-3. Epub 2012 Dec 28.

Abstract

Aluminum aerogels have extremely low thermal conductivities, and are ideal candidates for use in thermal superinsulators, adsorbents, sensors, catalyst carriers, and inorganic fillers. In the present work, the oligomerization mechanisms of Al(OH)3 were investigated systematically with the Gaussian 03 package at the B3LYP/6-311++G(d,p) level in combination with CPCM single-point energy calculations. The results of our theoretical model showed that: (1) the Al atoms are tetracoordinate and pentacoordinate; (2) in alkaline solution, Al(OH)3 tends to condense into more soluble polyhydroxy compounds; (3) the neutral dimerization of Al(OH)3 and the transfer of the hydrogen on the bridging hydroxyl are energetically favorable, but the most stable geometry is a four-membered Al-O ring structure linked by two bridging hydroxyls; (4) Al(OH)3 is inclined to form tetracoordinate oligomers, which develop into three-dimensional structures connected by four-membered Al-O rings.

摘要

铝气凝胶具有极低的热导率,是热超级绝热材料、吸附剂、传感器、催化剂载体和无机填料的理想选择。在本工作中,我们采用 Gaussian 03 程序包,在 B3LYP/6-311++G(d,p)水平上,结合 CPCM 单点能计算,系统地研究了 Al(OH)3 的齐聚机理。我们的理论模型结果表明:(1)Al 原子呈四配位和五配位;(2)在碱性溶液中,Al(OH)3 倾向于缩合形成更易溶解的多羟基化合物;(3)Al(OH)3 的中性二聚化和桥羟基上氢的转移在能量上是有利的,但最稳定的几何结构是由两个桥羟基连接的四元 Al-O 环结构;(4)Al(OH)3 倾向于形成四配位低聚物,这些低聚物进一步发展成由四元 Al-O 环连接的三维结构。

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