首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthesis of microporous inorganic-organic hybrids from layered octosilicate by silylation with 1,4-bis(trichloro- and dichloromethyl-silyl)benzenes
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Synthesis of microporous inorganic-organic hybrids from layered octosilicate by silylation with 1,4-bis(trichloro- and dichloromethyl-silyl)benzenes

机译:1,4-双(三氯甲硅烷基和二氯甲基硅烷基)苯以层状八硅酸盐硅烷化合成微孔无机有机杂化物

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摘要

Crystalline microporous inorganic-organic nanohybrids were synthesized by pillaring layered octosilicate with 1,4-bis( trichlorosilyl)benzene or 1,4-bis(dichloromethylsilyl)benzene. The silylating agents were preferentially bridged between the layers of octosilicate, resulting in the formation of microporous hybrids with BET surface areas of similar to 500 m(2)/g. The trichlorosilyl or dichloromethylsilyl groups were regularly grafted with confronting two Si-OH groups on the same octosilicate surface, and each reacted group possessed one unreacted site (chloro or methyl group). The micropores derived from 1,4-bis(trichlorosilyl)benzene showed a hydrophilic nature due to remaining Si-OH groups after hydrolysis of chlorosilyl groups, whereas those derived from 1,4-bis(dichloromethylsilyl)benzene showed a hydrophobic nature. The difference affected the phenol adsorption behavior from dilute aqueous solutions.
机译:以1,4-双(三氯硅基)苯或1,4-双(二氯甲基硅基)苯为支撑状,合成了结晶微孔无机-有机纳米杂化物.硅烷化剂优先在八硅酸盐层之间架桥,形成BET表面积相近500 m(2)/g的微孔杂化物。三氯硅基或二氯甲基硅基在同一八硅酸盐表面上与两个Si-OH基团有规律地接枝,每个反应基团都有一个未反应位点(氯基或甲基)。1,4-双(三氯硅基)苯衍生的微孔在氯硅烷基团水解后残留Si-OH基团,表现出亲水性,而1,4-双(二氯甲基硅基)苯衍生的微孔表现出疏水性。这种差异影响了苯酚对稀水溶液的吸附行为。

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