scholarly journals Solvent-Free Catalytic Oxidation of Benzyl Alcohol over Au-Pd Bimetal Deposited on TiO2: Comparison of Rutile, Brookite, and Anatase

2019 ◽  
Vol 14 (1) ◽  
Author(s):  
Xiaoliang Li ◽  
Jiangjiang Feng ◽  
Jia Sun ◽  
Zhe Wang ◽  
Wei Zhao

AbstractTiO2 (P25)-supported Au-Pd bimetal nanoparticles displayed excellent performance in the solvent-free benzyl alcohol catalytic oxidation. However, little research attention has been paid to investigate the effects of TiO2 form on the catalytic activity of Au-Pd/TiO2. In the present research, rutile, brookite, and anatase TiO2 were successfully synthesized and subsequently applied as the carrier to load Au-Pd nanoparticles by the deposition-precipitation method. The experimental results indicated that the benzyl alcohol conversion employing the rutile TiO2-supported Au-Pd catalyst is higher than the conversion of anatase and brookite TiO2-loaded Au-Pd catalysts. However, the Au-Pd/TiO2-rutile displayed the lowest and highest selectivity toward benzaldehyde and toluene, respectively. ICP-AES, XRD, XPS, and TEM were conducted to characterize these catalysts. The corresponding experimental results revealed that the excellent performance of Au-Pd/TiO2-rutile catalyst was attributed to both the smaller Au-Pd nanoparticle size distribution and the higher concentrations of Oα and Pd2+ species on the catalyst surface. In the recycle experiments, the Au-Pd/TiO2-rutile catalyst displayed lower reaction stability compared with the Au-Pd/TiO2-anatase and Au-Pd/TiO2-brookite, which might be due to the coverage of larger amount of aldehyde products on the surface.

Author(s):  
Gui Chen ◽  
Kuiyi You ◽  
Xiangbo Gong ◽  
Fangfang Zhao ◽  
Zhenpan Chen ◽  
...  

An efficient method for highly selective preparation of the high value-added benzyl alcohol (BOL) and benzaldehyde (BAL) from liquid-phase catalytic oxidation of toluene with molecular oxygen over CeO2-MnOx composite oxides...


2009 ◽  
Vol 11 (25) ◽  
pp. 5142 ◽  
Author(s):  
Nikolaos Dimitratos ◽  
Jose Antonio Lopez-Sanchez ◽  
David Morgan ◽  
Albert F. Carley ◽  
Ramchandra Tiruvalam ◽  
...  

Catalysts ◽  
2018 ◽  
Vol 8 (10) ◽  
pp. 431 ◽  
Author(s):  
Carine Chan-Thaw ◽  
Aditya Savara ◽  
Alberto Villa

In the last decades, the selective liquid phase oxidation of alcohols to the corresponding carbonyl compounds has been a subject of growing interest. Research has focused on green methods that use “clean” oxidants such as O2 in combination with supported metal nanoparticles as the catalyst. Among the alcohols, benzyl alcohol is one of the most studied substrates. Indeed, benzyl alcohol can be converted to benzaldehyde, largely for use in the pharmaceutical and agricultural industries. This conversion serves as model reaction in testing new potential catalysts, that can then be applied to other systems. Pd based catalysts have been extensively studied as active catalytic metals for alcohol oxidation for their high activity and selectivity to the corresponding aldehyde. Several catalytic materials obtained by careful control of the morphology of Pd nanoparticles, (including bimetallic systems) and by tuning the support properties have been developed. Moreover, reaction conditions, including solvent, temperature, pressure and alcohol concentration have been investigated to tune the selectivity to the desired products. Different reaction mechanisms and microkinetic models have been proposed. The aim of this review is to provide a critical description of the recent advances on Pd catalyzed benzyl alcohol oxidation.


2014 ◽  
Vol 2 (7) ◽  
pp. 1752-1759 ◽  
Author(s):  
Yingling Hong ◽  
Xiaolian Jing ◽  
Jiale Huang ◽  
Daohua Sun ◽  
Tareque Odoom-Wubah ◽  
...  

RSC Advances ◽  
2015 ◽  
Vol 5 (91) ◽  
pp. 74907-74915 ◽  
Author(s):  
Yufei He ◽  
Pengfei Yang ◽  
Jiaxuan Fan ◽  
Yanan Liu ◽  
Yiyun Du ◽  
...  

A Pd/HT catalyst with an average particle size of 2.3 nm and an electron-deficient Pd surface is synthesized by modified deposition–precipitation, and exhibits enhanced catalytic performance in the solvent-free oxidation of benzyl alcohol.


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