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Catalytic conversion of substituted and un-substituted cyclohexanone into corresponding enones and phenols by nanocatalysts under acid or base-free reaction conditions
Shah, Mazloom; Zhang, Fan; Ahmad, Ashfaq
2017
Source PublicationAPPLIED CATALYSIS A-GENERAL
Volume531Issue:xPages:161-168
AbstractThe catalytic conversion of substituted and unsubstituted cyclohexanones to the corresponding enones and aromatic alcohol catalyzed by Pd, Pd-1, Pd-cube, Cu, Ni, Ag@Pd and Ni-Sn nanocatalysts has been studied in the presence of O-2 as the oxidant without using any additives i.e. acid or base or ligand. The optimization of experimental parameters for dehydrogenation of cyclohexanones was established to achieve maximum yield of the product by using Pd nanocatalyst. The conversion of cyclohexanone, cyclohexenone, 3-methyl cyclohexanone and 3-methyl cyclohexenone catalyzed by Pd nanocatalyst at 80 degrees C, 10 atm O-2 pressure after 24 h, led to a 79%, 49%, 62% and 25% yields of desired products, respectively. Then, the conversion of substituted and unsubstituted cyclohexanones investigated in the presence of various nanocatalysts i.e., Pd-1, Pd-cube, Cu, Ni,Ag@Pd and Ni-Sn nanoparticles and was compared their percentage yields.
KeywordMetallic And biMetallic Nanoparticles Heterogeneous Nanocatalysts Catalytic Conversion Cyclic Ketones Enones And Phenols
Document Type期刊论文
Identifierhttp://ir.xtbg.org.cn/handle/353005/10296
Collection生物能源研究组
Recommended Citation
GB/T 7714
Shah, Mazloom,Zhang, Fan,Ahmad, Ashfaq. Catalytic conversion of substituted and un-substituted cyclohexanone into corresponding enones and phenols by nanocatalysts under acid or base-free reaction conditions[J]. APPLIED CATALYSIS A-GENERAL,2017,531(x):161-168.
APA Shah, Mazloom,Zhang, Fan,&Ahmad, Ashfaq.(2017).Catalytic conversion of substituted and un-substituted cyclohexanone into corresponding enones and phenols by nanocatalysts under acid or base-free reaction conditions.APPLIED CATALYSIS A-GENERAL,531(x),161-168.
MLA Shah, Mazloom,et al."Catalytic conversion of substituted and un-substituted cyclohexanone into corresponding enones and phenols by nanocatalysts under acid or base-free reaction conditions".APPLIED CATALYSIS A-GENERAL 531.x(2017):161-168.
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