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Title: Multifunctional nanostructures of Au–Bi₂O₃3 fractals for CO₂ reduction and optical sensing
Authors: TranPhu, T
Daiyan, R
Fusco, Z
Ma, Z
Rahim, LRA
Kiy, A
Kluth, P
Guo, X 
Zhu, Y 
Chen, H
Amal, R
Tricoli, A
Issue Date: 14-Jun-2020
Source: Journal of materials chemistry A, 14 June 2020, v. 8, no. 22, p. 11233-11245
Abstract: The development of nanomaterials with multifunctional properties presents a viable business case for potential scale-up of nanomaterial fabrication. Hence, the design and engineering of structures as well as tuning of active sites are crucial in generating multifunctional properties in nanomaterials. In this regard, we demonstrate a three-dimensional (3D) fractal structure of Au-Bi₂O₃3 with a fractal dimension (Df) of ≈ 1.80, which is obtained from the small-angle X-ray scattering (SAXS) measurement and through the box counting algorithm. The fractal structures, fabricatedviaa one-step direct synthesis, gives a homogeneous distribution of catalytically active nanocrystals Au and Bi₂O₃3 on a 3D platform with a large active surface area, resulting in a strong enhancement of its localized electric field. Therefore, when applied as a catalyst for electrochemical CO₂ reduction reactions (CO₂RR) and optical gas sensing, the material displays an excellent performance. Specifically, the fractal structure exhibits a high selectivity towards the formation of formate, achieving a very high faradaic efficiency of 97% and high mass-specific formate current density of −54 mA mg−1at −1.1 Vvs.a reversible hydrogen electrode (RHE). Similarly, this structure displayed a plasmonic shift as high as ∼5 nm for 4 vol% acetone sensing with a detection limit of 100 ppm towards different volatile organic compounds (VOCs).
Publisher: Royal Society of Chemistry
Journal: Journal of materials chemistry A 
ISSN: 2050-7488
EISSN: 2050-7496
DOI: 10.1039/d0ta01723j
Rights: This journal is © The Royal Society of Chemistry 2020
The following publication Tran-Phu, T., Daiyan, R., Fusco, Z., Ma, Z., Abd Rahim, L. R., Kiy, A., ... & Tricoli, A. (2020). Multifunctional nanostructures of Au–Bi 2 O 3 fractals for CO 2 reduction and optical sensing. Journal of Materials Chemistry A, 8(22), 11233-11245 is available at https://doi.org/10.1039/d0ta01723j.
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