Liu Manhong, Wang Chao, Yu William W
College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
J Nanosci Nanotechnol. 2010 Nov;10(11):7715-20. doi: 10.1166/jnn.2010.2797.
Poly(N-vinyl-2-pyrrolidone) (PVP)-stabilized Pd, Pt, Pd-Pt nanocatalysts were prepared and characterized by transmission electron microscopy (TEM). Hydrogenation of chlorobenzene was carried out over these colloidal nanocatalysts under ambient conditions. The catalytic properties for the hydrogenation of chlorobenzene depended on the composition of the bimetallic nanocatalysts. The conversion of chlorobenzene over PVP-Pd (83.64%) was higher than that of PVP-Pt (66.67%), which indicated that the activity of Pd was higher than that of Pt. In 10 hrs. the conversions of all the bimetallic nanocatalysts were higher than that of PVP-Pt (66.67%) monometallic nanocatalysts, and the maximum conversion of chlorobenzene (95.34%) was achieved using PVP-Pd/Pt = 1/1 catalytic system, which was much higher than that of the physical mixture of monometallic nanocatalysts (PVP-Pd and PVP-Pt) at the same Pd/Pt ratio as the PVP-Pd/Pt bimetallic nanocatalysts used. The selectivity to benzene and cyclohexane of the bimetallic nanocatalysts (with < or = 40 mol% Pt) was similar to that of PVP-Pd monometallic nanocatalysts, and nearly approximately 100% selectivity to benzene could be obtained, the selectivity to cyclohexane increased slowly with increasing of platinum content in bimetallic nanocatalysts.
制备了聚(N-乙烯基-2-吡咯烷酮)(PVP)稳定的钯、铂、钯-铂纳米催化剂,并通过透射电子显微镜(TEM)对其进行了表征。在环境条件下,在这些胶体纳米催化剂上进行了氯苯的氢化反应。氯苯氢化反应的催化性能取决于双金属纳米催化剂的组成。氯苯在PVP-Pd(83.64%)上的转化率高于PVP-Pt(66.67%),这表明钯的活性高于铂。在10小时内,所有双金属纳米催化剂的转化率均高于PVP-Pt(66.67%)单金属纳米催化剂,使用PVP-Pd/Pt = 1/1催化体系实现了氯苯的最大转化率(95.34%),这远高于相同钯/铂比例下的单金属纳米催化剂(PVP-Pd和PVP-Pt)的物理混合物,该比例与所使用的PVP-Pd/Pt双金属纳米催化剂相同。双金属纳米催化剂(铂含量≤40 mol%)对苯和环己烷的选择性与PVP-Pd单金属纳米催化剂相似,对苯的选择性几乎可达100%,随着双金属纳米催化剂中铂含量的增加,对环己烷的选择性缓慢增加。