Advancements in silver conductive inks: comparative evaluation of conventional and in-situ synthesis techniques
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11051-024-05929-0.pdf
Reference40 articles.
1. Beedasy V, Smith PJ (2020) Printed electronics as prepared by inkjet printing. Materials 13(3):704
2. Bouafia A et al (2021) The recent progress on silver nanoparticles: synthesis and electronic applications. Nanomaterials 11(9):2318
3. Rao CH et al (2022) A review on printed electronics with digital 3D printing: fabrication techniques, materials, challenges and future opportunities. J Electron Mater 51(6):2747–2765
4. Mo L et al (2019) Nano-silver ink of high conductivity and low sintering temperature for paper electronics. Nanoscale Res Lett 14(1):197
5. Wiklund J et al (2021) A review on printed electronics: fabrication methods, inks, substrates, applications and environmental impacts. J Manuf Mater Process 5(3):89
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1. Optimized Formulation and Realisation of Conductive Ink Specially Prepared for Flexible Substrate-Based Printed Electronic Circuits;2024-03-22
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