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粉末化学镀法制备的NiB/TiO2非晶态合金催化剂对环丁烯砜加氢反应的催化性能
引用本文:王来军,李伟,张明慧,陶克毅.粉末化学镀法制备的NiB/TiO2非晶态合金催化剂对环丁烯砜加氢反应的催化性能[J].催化学报,2003,24(11):816-820.
作者姓名:王来军  李伟  张明慧  陶克毅
作者单位:南开大学化学学院新催化材料科学研究所,天津,300071
基金项目:国家自然科学基金,天津市自然科学基金,南开大学-天津大学联合研究院教育部南开大学、天津大学科技合作项目,20003006,031606211,,,,
摘    要: 采用诱导沉积法及粉末化学镀法分别制备了纯态NiB及负载型NiB/TiO2非晶态合金催化剂.用XRD,ICP,SEM,TEM和DSC等手段对催化剂的物性及TiO2载体与NiB非晶态合金之间的相互作用进行了表征,考察了非晶态合金的结构、组成、形貌和热稳定性,并将其用于环丁烯砜加氢反应中.结果表明,相对于NiB而言,NiB/TiO2催化剂具有优良的热稳定性和催化活性,这缘于NiB和TiO2载体之间的相互作用及载体的分散作用.

关 键 词:非晶态合金      氧化钛  负载型催化剂  诱导化学沉积法  粉末化学镀法  环丁烯砜  加氢  环丁砜
文章编号:0253-9837(2003)11-0816-05
收稿时间:2003-11-25

Preparation of NiB/TiO2 Amorphous Alloy Catalyst by Powder Electroless Plating and Its Catalytic Performance for Hydrogenation of Sulfolene
WANG Laijun,LI Wei,ZHANG Minghui,TAO Keyi.Preparation of NiB/TiO2 Amorphous Alloy Catalyst by Powder Electroless Plating and Its Catalytic Performance for Hydrogenation of Sulfolene[J].Chinese Journal of Catalysis,2003,24(11):816-820.
Authors:WANG Laijun  LI Wei  ZHANG Minghui  TAO Keyi
Institution:WANG Laijun,LI Wei,ZHANG Minghui,TAO Keyi *
Abstract:NiB and NiB/TiO 2 amorphous alloy catalysts were prepared by induction-che mical deposition method and power electroless plating method, respectively. The amorphous structure and properties of the alloy catalysts, and the interaction b etween NiB alloy and TiO 2 support were characterized by XRD, ICP, SEM, TEM and DSC. The catalytic activity of NiB and NiB/TiO 2 was measured during the hydro genation of sulfolene. The SEM and TEM results showed that the NiB amorphous all oy particles were mainly spherical ones with average size around 800 nm. However , the NiB particles supported on the TiO 2 support presented in half-spherical shape with average size around 90 nm. The stabilizing effect of the support on N iB amorphous alloy observed by DSC and the superior catalytic activity of NiB/Ti O 2 were attributed to the interaction between NiB alloy and TiO 2 support, esp ecially to the high dispersion of NiB alloy particles on the support.
Keywords:amorphous alloy  nickel  boron  titania  supported catalyst  induction-chemical  deposition method  powder electroless plating method  sulfolene  hydrogenation    sulfolane
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