首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Supramolecular organization in organic-inorganic heterogeneous hybrid catalysts formed from polyoxometalate and poly(ampholyte) polymer
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Supramolecular organization in organic-inorganic heterogeneous hybrid catalysts formed from polyoxometalate and poly(ampholyte) polymer

机译:由多金属氧酸盐和聚(两性电解质)聚合物形成的有机-无机非均相杂化催化剂中的超分子组织

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摘要

Hybridization of polyoxometalates (POMs) via the formation of an organic-inorganic association constitutes a new route to develop a heterogeneous POM catalyst with tunable functionality imparted through supramolecular assembly. Herein, we report on strategies to obtain tunable well-defined supramolecular architectures of an organic-inorganic heterogeneous hybrid catalyst formed by the association of a hydrophobically substituted polyampholyte copolymer (poly N, N-diallyl-N-hexylamine-alt-maleic acid) and phosphotungstic acid (H_3PW_(12)O_(40)) POMs. The self-assembling property of the initial polyampholyte copolymer matrix is modulated by controlling the pH of the hybridization solution. When deposited on a mica surface, isolated, long and extended polymer chains are formed under basic conditions (pH 7.9), while globular or coiled structures are formed under acidic conditions (pH 2). The supramolecular assembly of the POM-polymer hybrid is found to be directed by the type and quantities of charges present on the polyampholyte copolymer, which themselves depend on the pH conditions. The hypothesis is that the Keggin type [PW_(12)O_(40)]~(3-) anions, which have a size of ~1 nm, electrostatically bind to the positive charge sites of the polymer backbone. The hybrid material stabilized at pH 5.3 consists of POM-decorated polymer chains. Statistical analysis of distances between pairs of POM entities show narrow density distributions, suggesting that POM entities are attached to the polymer chains with a high level of order. Conversely, under acidic conditions (pH 2), the hybrid shows the formation of a core-shell type of structure. The strategies reported here, to tune the supramolecular assembly of organic-inorganic hybrid materials, are highly valuable for the design and a more rational utilization of POM heterogeneous catalysts in several chemical transformations.
机译:通过形成有机-无机缔合的多金属氧酸盐(POM)的杂交构成了开发具有通过超分子组装赋予的可调功能的非均相POM催化剂的新途径。在本文中,我们报告了通过疏水取代的聚两性电解质共聚物(聚N,N-二烯丙基-N-己胺-alt-马来酸)和有机物形成的有机-无机非均相杂化催化剂的可调超分子结构的可调策略。磷钨酸(H_3PW_(12)O_(40))POM。通过控制杂交溶液的pH值,可以调节初始的两性共聚物基体的自组装性能。当沉积在云母表面上时,在碱性条件下(pH 7.9)会形成分离的,较长的聚合物链,而在酸性条件下(pH 2)则会形成球状或卷曲的结构。发现POM-聚合物杂化物的超分子组装是由存在于聚两性电解质共聚物上的电荷的类型和数量所决定的,而电荷本身又取决于pH条件。假设是Keggin型[PW_(12)O_(40)]〜(3-)阴离子的大小约为1 nm,与聚合物主链的正电荷位点静电结合。稳定在pH 5.3的杂化材料由装饰有POM的聚合物链组成。对POM实体对之间的距离的统计分析显示出狭窄的密度分布,这表明POM实体以高水平的顺序连接到聚合物链上。相反,在酸性条件下(pH 2),杂化物显示出核-壳型结构的形成。此处报道的用于调节有机-无机杂化材料的超分子组装的策略,对于在几种化学转化中设计和更合理地利用POM非均相催化剂非常有价值。

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