TY - JOUR
T1 - Synthesis of Au nanorods via autocatalytic growth of Au seeds formed by sonochemical reduction of Au(I)
T2 - Relation between formation rate and characteristic of Au nanorods
AU - Okitsu, Kenji
AU - Semboshi, Satoshi
N1 - Funding Information:
We acknowledge Yuho Nunota (Osaka Prefecture University), Tetsuo Shikaku (Osaka Prefecture University), and Ikuyo Sato (Osaka Prefecture University) for the help of ultrasonic irradiation experiment, UV-Vis spectrum measurement, and TEM analysis.
Publisher Copyright:
© 2020 Elsevier B.V.
PY - 2020/12
Y1 - 2020/12
N2 - The sonochemical formation of Au seeds and their autocatalytic growth to Au nanorods were investigated in a one-pot as a function of concentration of HAuCl4, AgNO3, and ascorbic acid (AA). The effects of ultrasonic power and irradiation time were also investigated. In addition, the formation rate of Au nanorods was analyzed by monitoring the extinction at 400 nm by UV–Vis spectroscopy and compared with the growth behavior of Au seeds to nanorods. Most of the reaction conditions affected the yield, size, and shape of Au nanorods formed. It was confirmed that the concentration balance between HAuCl4 and AA was important to proceed the formation of Au seeds and nanorods effectively. The formation rate became faster with increasing AA concentration and dog-bone shaped nanorods were formed at high AA concentration. It was also confirmed a unique phenomenon that the shape of Au nanorods changed even after the completion of the reduction of Au(I) in the case of short-time ultrasonic irradiation for Au seed formation.
AB - The sonochemical formation of Au seeds and their autocatalytic growth to Au nanorods were investigated in a one-pot as a function of concentration of HAuCl4, AgNO3, and ascorbic acid (AA). The effects of ultrasonic power and irradiation time were also investigated. In addition, the formation rate of Au nanorods was analyzed by monitoring the extinction at 400 nm by UV–Vis spectroscopy and compared with the growth behavior of Au seeds to nanorods. Most of the reaction conditions affected the yield, size, and shape of Au nanorods formed. It was confirmed that the concentration balance between HAuCl4 and AA was important to proceed the formation of Au seeds and nanorods effectively. The formation rate became faster with increasing AA concentration and dog-bone shaped nanorods were formed at high AA concentration. It was also confirmed a unique phenomenon that the shape of Au nanorods changed even after the completion of the reduction of Au(I) in the case of short-time ultrasonic irradiation for Au seed formation.
KW - Au nanorod
KW - Au seed
KW - Autocatalytic growth
KW - Autocatalytic reduction
KW - Sonochemical reduction
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U2 - 10.1016/j.ultsonch.2020.105229
DO - 10.1016/j.ultsonch.2020.105229
M3 - Article
C2 - 32623344
AN - SCOPUS:85087281906
SN - 1350-4177
VL - 69
JO - Ultrasonics Sonochemistry
JF - Ultrasonics Sonochemistry
M1 - 105229
ER -