Synthesis of cuprous oxide/silver (Cu 2 O/Ag) hybrid as surface-enhanced Raman scattering probe for trace determination of methyl orange

Author:

Pham Thi Thu Ha1,Vu Xuan Hoa2ORCID,Dien Nguyen Dac3,Trang Tran Thu2,Van Hao Nguyen2,Toan Nguyen Duc4,Thi Ha Lien Nghiem4,Tien Tong Sy5,Chi Tran Thi Kim6,Hien Nguyen Thi6,Tan Pham Minh7,Linh Dong Thi7

Affiliation:

1. Faculty of Chemistry, TNU-University of Sciences, Tan Thinh ward, Thai Nguyen city 24000, Vietnam

2. Institute of Science and Technology, TNU-University of Sciences, Tan Thinh ward, Thai Nguyen city 24000, Vietnam

3. Faculty of Occupational Safety and Health, Vietnam Trade Union University, 169 Tay Son street, Dong Da district, Ha Noi city 100000, Vietnam

4. Centre for Quantum Electronics, Institute of Physics, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet road, Cau Giay district, Ha Noi city 100000, Vietnam

5. University of Fire Prevention and Fighting, 243 Khuat Duy Tien road, Thanh Xuan district, Ha Noi city 100000, Vietnam

6. Institute of Materials Science, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet road, Cau Giay district, Ha Noi city 100000, Vietnam

7. Faculty of Fundamental Sciences, Thai Nguyen University of Technology, 666 3/2 road, Thai Nguyen city 24000, Vietnam

Abstract

Recently, there have been publications on preparing hybrid materials between noble metal and semiconductor for applications in surface-enhanced Raman scattering (SERS) substrates to detect some toxic organic dyes. However, the use of cuprous oxide/silver (Cu 2 O/Ag) to measure the trace amounts of methyl orange (MO) has not been reported. Therefore, in this study, the trace level of MO in water solvent was determined using a SERS substrate based on Cu 2 O microcubes combined with silver nanoparticles (Ag NPs). Herein, a series of Cu 2 O/Ag x ( x = 1–5) hybrids with various Ag amounts was synthesized via a solvothermal method followed by a reduction process, and their SERS performance was studied in detail. X-ray diffraction (XRD) and scanning electron microscopy results confirmed that 10 nm Ag NPs were well dispersed on 200–500 nm Cu 2 O microcubes to form Cu 2 O/Ag heterojunctions. Using the as-prepared Cu 2 O and Cu 2 O/Ag x as MO probe, the Cu 2 O/Ag5 nanocomposite showed the highest SERS activity of all samples with the limit of detection as low to 1 nM and the enhancement factor as high as 4 × 10 8 . The logarithm of the SERS peak intensity at 1389 cm −1 increased linearly with the logarithm of the concentration of MO in the range from 1 nM to 0.1 mM.

Funder

Thai Nguyen University of Sciences

Publisher

The Royal Society

Subject

Multidisciplinary

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