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Synthesis and modification of p(VI) microgels for in situ metal nanoparticle preparation and their use as catalyst for hydrogen generation from NaBH4 hydrolysis

机译:用于原位金属纳米粒子制备的p(VI)微凝胶的合成和修饰及其作为NaBH4水解产生氢的催化剂的用途

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Poly(vinyl imidazole) (p(VI)) and poly(VI)-silica (p(VI)-Si) composites were synthesized in an oil-in-water micro emulsion system. Additional pores were generated inside p(VI)-Si composites by removing the silica by HF treatment to obtain poly(V!)-porous (p(Vl)-por) particles. The size of p(VI)-based particles ranged between 300 and 800 nm. Co and Ni metal nanoparticles were prepared inside p(VI)-based particles by the absorption of the corresponding metal ions from aqueous solution, and reduction with NaBH4 in situ. Different parameters such as temperature, metal nanoparticle types, NaOH concentration, and metal ion reloading for metal nanoparticle formation for hydrogen generation were investigated. The activation energy, the enthalpy, and the entropy for the NaBH4 hydrolysis reaction were calculated to be 37.578 kj mol~(-1), 34.146 kJ mol~(-1), and -191.22 kJ mol~(-1) K~(-1), respectively. It was found that the hydrogen production rate increased drastically by five times repetitive metal ion loading-reduction cycles that increased the amount of metal nanoparticle inside p(VI) particles.
机译:在水包油微乳液体系中合成了聚乙烯基咪唑(p(VI))和聚(VI)-二氧化硅(p(VI)-Si)复合材料。通过HF处理除去二氧化硅以获得p(VI)-多孔(p(VI)-por)颗粒,从而在p(VI)-Si复合材料内部产生了另外的孔。基于p(VI)的粒子的大小在300到800 nm之间。通过从水溶液中吸收相应的金属离子并原位用NaBH4还原,在p(VI)基颗粒内部制备了Co和Ni金属纳米颗粒。研究了不同的参数,例如温度,金属纳米颗粒类型,NaOH浓度以及用于形成氢的金属纳米颗粒形成过程中的金属离子重载。计算得出NaBH4水解反应的活化能,焓和熵分别为37.578 kj mol〜(-1),34.146 kJ mol〜(-1)和-191.22 kJ mol〜(-1)K〜( -1)。发现氢的产生速率通过重复的五次重复的金属离子负载-减少循环而急剧增加,这增加了p(VI)粒子内部的金属纳米粒子的数量。

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