scholarly journals Facile phyto‐mediated synthesis of gold nanoparticles using Eupatorium odoratum leaf extract and its size‐dependent catalytic activity

2019 ◽  
Vol 14 (11) ◽  
pp. 1163-1168
Author(s):  
Alok Roy ◽  
Bidhan Mohanta
2015 ◽  
Vol 358 (1) ◽  
pp. 106-111 ◽  
Author(s):  
Anatoly Zinchenko ◽  
Shota Taniguchi ◽  
Shizuaki Murata

RSC Advances ◽  
2018 ◽  
Vol 8 (44) ◽  
pp. 24819-24826 ◽  
Author(s):  
N. K. R. Bogireddy ◽  
U. Pal ◽  
L. Martinez Gomez ◽  
V. Agarwal

Size dependent catalytic activity of AuNPs synthesized at room temperature from Coffea arabica seed extract.


RSC Advances ◽  
2015 ◽  
Vol 5 (120) ◽  
pp. 99364-99377 ◽  
Author(s):  
Aftab Ahmad ◽  
Yun Wei ◽  
Fatima Syed ◽  
Muhammad Imran ◽  
Zia Ul Haq Khan ◽  
...  

A green and facile method for the synthesis of gold nanoparticles with efficient catalytic activity.


2010 ◽  
Vol 132 (1) ◽  
pp. 138-146 ◽  
Author(s):  
Xiaochun Zhou ◽  
Weilin Xu ◽  
Guokun Liu ◽  
Debashis Panda ◽  
Peng Chen

2017 ◽  
Vol 2017 ◽  
pp. 1-6 ◽  
Author(s):  
Yoki Yulizar ◽  
Tresye Utari ◽  
Harits Atika Ariyanta ◽  
Digha Maulina

The aqueous fraction of Polyscias scutellaria leaf extract (PSE) has been used as a reducing agent and stabilizer in the green synthesis of gold nanoparticles (AuNPs). UV-Vis spectrophotometry, particle size analyzer (PSA), Fourier transform infrared (FTIR) spectroscopy, transmission electron microscopy-selected area electron diffraction (TEM-SAED), and X-ray diffraction (XRD) were used to characterize AuNPs. The AuNPs have a size of 5–20 nm and have a face centered cubic (fcc) crystal structure and are stable for 21 days. Phenolic compounds, which are secondary metabolites of PSE, act as an active compound to reduce Au3+ ion to Au0, as well as stabilize the AuNPs through their surface interaction with carbonyl and hydroxyl groups of phenols. AuNPs exhibit excellent catalytic activity for the reduction of methylene blue with NaBH4. The reduction of methylene blue using AuNPs catalysts is a pseudo-first-order reaction with a reduction rate constant (kobs) of 0.0223 min−1.


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