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醇与衍生羧酸形成的氢键二聚体引发它们被纳米多孔晶体PPO膜吸附

Hydrogen Bonded Dimer of an Alcohol with the Derived Carboxylic Acid Triggering their Sorption by Nanoporous-crystalline PPO Films.

作者信息

Nagendra Baku, Cozzolino Antonietta, Acocella Maria Rosaria, Daniel Christophe, Rizzo Paola, Guerra Gaetano

机构信息

Dipartimento di Chimica e Biologia "A.Zambelli", INSTM Research Unit, Università di Salerno, Via Giovanni Paolo II 132, 84084, Fisciano, SA, Italy.

出版信息

Chemistry. 2023 Oct 2;29(55):e202301441. doi: 10.1002/chem.202301441. Epub 2023 Aug 30.

Abstract

Films exhibiting nanoporous-crystalline (NC) phases of poly(2,6-dimethyl-1,4-phenylene) oxide (PPO), which are highly effective to absorb apolar organic guest molecules, are also able to absorb polar molecules (like alcohols and carboxylic acids) but only from concentrated organic solutions. NC PPO films, which do not absorb alcohols and carboxylic acids from diluted aqueous solutions, exhibits a huge uptake (even above 30 wt %) of benzyl alcohol (BAL) and benzoic acid (BA), if BA is obtained by spontaneous room temperature oxidation of BAL in aqueous solution. This phenomenon is rationalized by an easy uptake, mainly by the PPO intrahelical crystalline empty channels, of a BAL/BA 1/1 hydrogen-bonded dimer. This huge uptake of BAL/BA dimer by NC PPO films, which is also fast for films exhibiting the orientation of the crystalline helices perpendicular to the film plane (c orientation), can be exploited for purification of water from BAL, when present in traces. High and fast sorption of a hydrogen bonded dimer and negligible sorption of the two separate compounds is possibly unprecedented for absorbent materials.

摘要

呈现聚(2,6-二甲基-1,4-亚苯基)氧化物(PPO)纳米多孔晶体(NC)相的薄膜对吸收非极性有机客体分子非常有效,它也能够吸收极性分子(如醇类和羧酸),但仅能从浓有机溶液中吸收。NC PPO薄膜不能从稀水溶液中吸收醇类和羧酸,但如果苯甲酸(BA)是通过苯甲醇(BAL)在水溶液中室温下自发氧化得到的,那么该薄膜对苯甲醇(BAL)和苯甲酸(BA)有大量吸收(甚至超过30 wt%)。这种现象的原因是,PPO螺旋内晶体空穴通道主要容易吸收BAL/BA 1/1氢键二聚体。NC PPO薄膜对BAL/BA二聚体的这种大量吸收,对于呈现垂直于薄膜平面的晶体螺旋取向(c取向)的薄膜来说也是快速的,当水中存在痕量BAL时,可利用这种特性从水中纯化BAL。对于吸收材料而言,氢键二聚体的高快速吸附以及两种单独化合物的可忽略不计的吸附可能是前所未有的。

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