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A facile synthesis route to improve the catalytic activity of inherently cationic and magnetic catalyst systems for hydrogen generation from sodium borohydride hydrolysis

机译:一种简便的合成路线,可提高固有的阳离子和磁性催化剂体系对由硼氢化钠水解产生氢的催化活性

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Inherently cationic poly(3-acrylamidoproply)trimethylammonium chloride) (p(APTMACl)) as hydrogel and cryogel as nonporous and superporous structures to use as template for cobalt and Nickel metal nanoparticle preparation and then H-2 production from NaBH4 hydrolysis. Use of p(APTMACl) hydrogels in H-2 generation reactions from hydrolysis is an advantage due to their inherently cationic nature and no requirement for any modification/quaternization steps to load metal salts for in situ metal nanoparticle preparation. However, it is very well known that the metal loading processes of p(APTMACl) hydrogels are very slow. Therefore, the superporous cryogels prepared from p(APTMACl) offered great advantages in terms of swelling, metal absorption for in situ metal nanoparticle preparation, and then higher catalytic activity in hydrolysis of NaBH4. The p(APTMACl) cryogels and their metal composites provide 32, 3600, 1.5, 5.5 and 3.5 fold faster swelling degree, swelling time, metal absorption capacity, metal absorption time and H-2 generation rate, respectively than hydrogels and metal composites. In addition, p(APTMACl)-Co metal composites are shown to have highly useful characteristics in H-2 generation reaction from hydrolysis of NaBH4, due to their innate magnetic character, which allows control by an externally applied magnetic field, and reusability, with almost 80% at the end of 5th use. (C) 2014 Elsevier B.V. All rights reserved.
机译:固有的阳离子聚(3-丙烯酰胺基丙基)三甲基氯化铵(p(APTMACl))作为水凝胶,而冷冻凝胶则作为无孔和超孔结构,用作制备钴和镍金属纳米粒子,然后由NaBH4水解生成H-2的模板。在水解产生的H-2生成反应中使用p(APTMACl)水凝胶是一个优势,因为它们具有固有的阳离子性质,并且不需要任何修饰/季铵化步骤以负载金属盐就地制备金属纳米粒子。然而,众所周知,p(APTMAC1)水凝胶的金属负载过程非常缓慢。因此,由p(APTMAC1)制备的超孔冷冻凝胶在溶胀,原位金属纳米颗粒制备的金属吸收以及在NaBH4的水解中具有更高的催化活性方面提供了很大的优势。 p(APTMAC1)冷冻凝胶及其金属复合材料的溶胀度,溶胀时间,金属吸收能力,金属吸收时间和H-2生成速率分别比水凝胶和金属复合物快32倍,3600倍,1.5倍,5.5倍和3.5倍。另外,p(APTMACl)-Co金属复合物由于其固有的磁性特性,因此在NaBH4水解引起的H-2生成反应中显示出非常有用的特性,可以通过外部施加的磁场进行控制,并且可重复使用在第5次使用后将近80%。 (C)2014 Elsevier B.V.保留所有权利。

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