Au-Pd bimetallic nanoparticles embedded highly porous Fenugreek polysaccharide based micro networks for catalytic applications

被引:36
|
作者
Mallikarjuna, K. [1 ]
Bathula, Chinna [2 ]
Reddy, G. Dinneswara [3 ,4 ]
Shrestha, Nabeen K. [2 ]
Kim, Haekyoung [1 ]
Noh, Yong-Young [2 ]
机构
[1] Yeungnam Univ, Sch Mat Sci & Engn, Gyongsan 712749, South Korea
[2] Dongguk Univ, Dept Energy & Mat Engn, Seoul 100715, South Korea
[3] Sogang Univ, Korean Ctr Artificial Photosynth, Seoul 121742, South Korea
[4] Sogang Univ, Ctr Nanomat, Seoul 121742, South Korea
关键词
Green synthesis; Gold-palladium nanoparticles; Hydrogenation; 4-nitrophenol to 4-aminophenol; SILVER NANOPARTICLES; PALLADIUM NANOPARTICLES; MUCOADHESIVE BEADS; GREEN SYNTHESIS; TAMARIND; NANOCATALYSTS; EXTRACT; SEEDS;
D O I
10.1016/j.ijbiomac.2018.12.137
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Currently, metallic nanoparticles possessing versatile heterogeneous catalytic functionality such as in hydrogenation, water splitting, hydrogen production and CO2 reduction for global pollution remediation have been paid great attentions due to their high chemical stability, superior activity and unique electrical and optical properties. However, the gradual degradation of their catalytic activity on multiple usage limits the monometallic nanoparticles to industrial applications. Herein, we fabricated the highly porous fenugreek polysaccharide assisted green synthesis of Au-Pd nanostructures for heterogeneous catalytic hydrogenation of the industrial usable highly toxic 4-nitrophenol to the medicinally useful 4-aminophenol. The aqueous method developed in the present work is environmentally friendly, simple and low-cost procedure. The fabricated bimetallic porous Au Pd nano structures characterized using SEM, TEM, UV-Vis, XRD, XPS and FTIR analysis. The catalytic activity of the synthesized nanostructures was studied for the heterogeneous hydrogenation of 4-nitrophenol to 4-aminophenol in presence of NaBH4, and the catalytic kinetic for the hydrogenation was analyzed via an UV-Vis spectrometer. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:352 / 358
页数:7
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