Study of Structural and Optical Behaviour of Silver -Copper Bimetallic Nanoparticles

Authors

  • R. S. M. Ponrani Department of Physics, Sarah Tucker College, Tirunelveli-627007, Tamilnadu, India.
  • D. E. Nancy Department of Physics, Sarah Tucker College, Tirunelveli-627007, Tamilnadu, India
  • S. G. Rejith Department of Physics, Sri Paramakalyani College, Alwarkuruchi, Tenkasi-627412, Tamilnadu, India.
  • S. C. V. Durai Assistant Professor, Department of Physics, Sri Paramakalyani College, Alwarkuruchi, Tenkasi, Tamil Nadu, India

DOI:

https://doi.org/10.15330/pcss.25.1.79-84

Keywords:

Nanocomposites, Silver-Copper, Reducing agent, band gap, dielectric constant, particle size.

Abstract

Silver-based nanomaterials have proven interesting and promising material for numerous applications such as biosensor, antimicrobial, anticancer agent, catalyst, food and water treatment, energy storage devices etc.In this study, nanoparticles of Silver and Copper were prepared by chemical reduction method, using hydrazine hydrate and Sodium borohydride as reducing agent. Fine powder of Ag-Cu nanoparticles (NPs)was obtained. The structural analysis of the sample wasdone using Powder XRD, SEM and TEM images and particle size analysis by DLS.The chemical purity and the elemental compositions of synthesized NPs were studied using SEM-EDX. Optical properties of the Ag-Cu NPs were analyzed using UV-DRS spectrum and FTIR spectrum. PXRD reveals that the NPs are highly crystalline in nature.The average crystallite size is30 nm. SEM and TEM images confirm the spherical morphology and the particle size is in nm. The DLS-particle size analyzer shows the size distribution of most of the NPs ranging from 9 nm to 100 nm. The EDX analysis reveals the percentage of elemental composition as 14.71, 9.06 and 76.23 for silver, copper and oxygen respectively. UV-DRS spectrum shows the absorption maximum occur at 371 nm. Due to the synergistic effect of silver and copper, there is blue shift in the absorption maximum. The IR spectrum discloses the metal oxide bond in the synthesized NPs.

References

X. F. Zhang, Z. G. Liu, W. Shen, S. Gurunathan, Silver nanoparticles: Synthesis, characterization, properties, applications, and therapeutic approaches, International Journal of Molecular Sciences, 2016, 17(9), 1534 (2016); https://doi.org/10.3390/ijms17091534.

V. Rubbish, V. Kyrylenko, M. Durkot, L. Makar, M. Pop, A. Tarnaj, M. Trunover, S. Mudry, I. Shtablavyi, Rapid formation methods of arrays of randomly distributed Au and Ag nanoparticles, their morphologies and optical characteristics, Physics and Chemistry of Solid State, 22(4), 804 (2021); https://doi.org/10.15330/pcss.22.4.804-810.

S. H. Lee, W. Y. Rho, S. J. Park, J. Kim, O. S. Kwon, B. H. Jun, Multifunctional self-assembled monolayers via micro contact printing and degas-driven flow guided patterning, Scientific Reports, 8, 16763 (2018); https://doi.org/10.1038/s41598-018-35195-9.

Z.A.A. Aziz, H.M. Nasir, A. Ahmad, S.H. M. Setapar, W. L. Peng, S. C. Chuo, A. Khatoon, K. Umar, A.A. Yaqoob, M.N.M. Ibrahim, Role of nanotechnology for design and development of cosmeceutical: application in makeup and skin care, Frontiers Chemistry, 7, 739 (2019); https://doi.org/10.3389/fchem.2019.00739.

F. Naaz, P. Lahiri, C. Kumari, H. K. Dubey, Spectroscopic, Magnetic and Morphological studies of MgFe2O4 Nanopowder, Physics and Chemistry of Solid State, 24(2), 392 (2023); https://doi.org/10.15330/pcss.24.2.392-402.

D. Chen, Q. Yao, P. Cui, H. Liu, J. Xie, J. Yang, Tailoring the Selectivity of Bimetallic Copper–Palladium Nanoalloys for Electrocatalytic Reduction of CO2 to CO, ACS Applied Energy Materials, 1, 883 (2018); https://doi.org/10.1021/jacs.5b08259.

A.A.E. Mel, M. Chettab, E. Gautron, A. Chauvin, B. Humbert, J. Y. Mevellec, C. Delacote, D. Thiry, N. Stephant, J. Ding, K. Du, C. H. Choi and P. Y. Tessier, Galvanic replacement reaction: a route to highly ordered bimetallic nanotubes, The Journal of Physical Chemistry C, 120, 17652 (2016); https://doi.org/10.1021/acs.jpcc.6b06393.

M. Liaskovska, T. Tatarchuk, V. Kotsyubynsky, H. Ersteniuk, Zn-doped CoFe2O4 Nanoparticles Synthesized Using Ginkgo Biloba Extract: Cation Distribution, Mossbauer Studies and Application for Water Treatment, Physics and Chemistry of Solid State, 22(4), 792 (2021); https://doi.org/10.15330/pcss.22.4.792-803.

K.L. Chitturi, S. Garimella, A.K. Marapaka, K.R. Kudle, R. Merugu, Single Pot Green Synthesis, Characterization, Antitumor Antibacterial, Antioxidant Activity of Bimetallic Silver and Copper Nanoparticles Using Fruit Pulp of Palmyra Fruit, Journal of Bionanoscience, 12(2), 284 (2018); https://doi.org/10.1166/jbns.2018.1520.

S. Delsante, G. Borzone, R. Novakovic, D. Piazza, G. Pigozzi, J. J. Rusch, M. Pilloni, G. Ennas, Synthesis and thermo dynamics of Ag–Cu nanoparticles, Physical Chemistry Chemical Physics, 17, 28387 (2015); https://doi.org/10.1039/C5CP02058A.

N.A.N. Mohamad, N.A. Arham, J. Junaidah, A. Hadi, S. A. Idris, Green Synthesis of Ag, Cu and AgCu Nanoparticles using Palm Leaves Extract as the Reducing and Stabilizing Agents, IOP Conference Series: Materials Science and Engineering, 358(1), 012063 (2018); https://10.1088/1757-899X/358/1/012063.

M. Umadevi, S. Shalini, M. R. Bindhu, Synthesis of silver nanoparticle using D. carota extract, Advances in Natural Sciences: Nanoscience and Nanotechnology, 3(2), 025008 (2012); https://10.1088/2043-6262/3/2/025008.

S. Fatma, P. Kalainila, R. Sachidanandan, E. Ravindran, S. Renganathan, Green synthesis of copper nanoparticle from Passiflora foetida leaf extract and its antibacterial activity, Asian Journal of Pharmaceutical and Clinical Research, 10, 79-83 (2017); https://doi.org/10.22159/ajpcr.2017.v10i4.15744.

R.R. Reddy, K.R. Gopal, K. Narasimhulu, L.S.S. Reddy, K.R. Kumar, C.V.K. Reddy, S.N. Ahmad, Correlation between optical electronegativity and refractive index of ternary chalcopyrites, semiconductors, insulators, oxides and alkali halides, Optical Matterials, 31, 209 (2008); https://doi.org/10.1016/j.optmat.2008.03.010.

L. Wang, C. Darviot, J. Z. Farfan, S. Patskovsky, D. Trudel, M. Meunier, Designable nanoplasmonic biomarkers for direct microscopy cytopathology diagnostics, Journal of Biophotonics, 12, 201900166 (2019); https://doi.org/10.1002/jbio.201900166.

S. Patskovsky, E. Bergeron, D. Rioux, M. Simard, M. Meunier, Hyperspectral reflected light microscopy of plasmonic Au/Ag alloy nanoparticles incubated as multiplex chromatic biomarkers with cancer cells, Analyst, 139, 5247 (2014); https://doi.org/10.1039/C4AN01063A.

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Published

2024-02-15

How to Cite

Ponrani, R. S. M., Nancy, D. E., Rejith, S. G., & Durai, S. C. V. . (2024). Study of Structural and Optical Behaviour of Silver -Copper Bimetallic Nanoparticles. Physics and Chemistry of Solid State, 25(1), 79–84. https://doi.org/10.15330/pcss.25.1.79-84

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Section

Scientific articles (Physics)