Inkjet-Printing Nanoparticle Gold Silver Ink Cyclic Olefin

PDF Publication Title:

Inkjet-Printing Nanoparticle Gold Silver Ink Cyclic Olefin ( inkjet-printing-nanoparticle-gold-silver-ink-cyclic-olefin )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 014

Sensors 2020, 20, 1333 14 of 15 20. Kim, H.-S.; Dhage, S.R.; Shim, D.-E.; Hahn, H.T. Intense pulsed light sintering of copper nanoink for printed electronics. Appl. Phys. A 2009, 97, 791–798. [CrossRef] 21. Falat, T.; Felba, J.; Platek, B.; Piasecki, T.; Moscicki, A.; Smolarek, A. Low-temperature, photonic approach to sintering the ink-jet printed conductive microstructures containing nano sized silver particles. In Proceedings of the 18th European Microelectronics Packaging Conference, Brighton, UK, 12–15 September 2011; pp. 1–4. 22. Hwang, S.-J.; Tseng, M.-C.; Shu, J.-R.; Her Yu, H. Surface modification of cyclic olefin copolymer substrate by oxygen plasma treatment. Surf. Coat. Technol. 2008, 202, 3669–3674. [CrossRef] 23. Pletcher, D.; Greff, R.; Peat, R.; Peter, L.M.; Robinson, J. Instrumental Methods in Electrochemistry; Woodhead Publishing: Cambridge, UK, 2001; ISBN 978-1-898563-80-8. 24. Wang, Y.; Limon-Petersen, J.G.; Compton, R.G. Measurement of the diffusion coefficients of [Ru(NH3)6]3+ and [Ru(NH3)6]2+ in aqueous solution using microelectrode double potential step chronoamperometry. J. Electroanal. Chem. 2011, 652, 13–17. [CrossRef] 25. Trasatti, S.; Petrii, O.A. Real surface area measurements in electrochemistry. J. Electroanal. Chem. 1992, 327, 353–376. [CrossRef] 26. Scanlon, M.D.; Salaj-Kosla, U.; Belochapkine, S.; MacAodha, D.; Leech, D.; Ding, Y.; Magner, E. Characterization of Nanoporous Gold Electrodes for Bioelectrochemical Applications. Langmuir 2012, 28, 2251–2261. [CrossRef] 27. Keighley, S.D.; Li, P.; Estrela, P.; Migliorato, P. Optimization of DNA immobilization on gold electrodes for label-free detection by electrochemical impedance spectroscopy. Biosens. Bioelectron. 2008, 23, 1291–1297. [CrossRef] [PubMed] 28. Li, Z.; Zhang, L.; Mo, H.; Peng, Y.; Zhang, H.; Xu, Z.; Zheng, C.; Lu, Z. Size-fitting effect for hybridization of DNA/mercaptohexanol mixed monolayers on gold. Analyst 2014, 139, 3137. [CrossRef] [PubMed] 29. Steel, A.B.; Herne, T.M.; Tarlov, M.J. Electrochemical Quantitation of DNA Immobilized on Gold. Anal. Chem. 1998, 70, 4670–4677. [CrossRef] 30. Notomi, T. Loop-mediated isothermal amplification of DNA. Nucleic Acids Res. 2000, 28, e63. [CrossRef] [PubMed] 31. Roy, S.; Yue, C.Y.; Lam, Y.C.; Wang, Z.Y.; Hu, H. Surface analysis, hydrophilic enhancement, ageing behavior and flow in plasma modified cyclic olefin copolymer (COC)-based microfluidic devices. Sens. Actuators B 2010, 150, 537–549. [CrossRef] 32. Rabbow, T.J.; Junker, N.; Kretzschmar, C.; Schneider, M.; Michaelis, A. Electrochemically Induced Degradation of Screen-Printed Gold Thick Films. J. Ceram. Sci. Technol. 2012, 3, 199–210. 33. Liston, E.M.; Martinu, L.; Wertheimer, M.R. Plasma surface modification of polymers for improved adhesion: A critical review. J. Adhes. Sci. Technol. 1993, 7, 1091–1127. [CrossRef] 34. Lukacs, P.; Pietrikova, A.; Cabuk, P. Dependence of electrical resistivity on sintering conditions of silver layers printed by InkJet printing technology. Circuit World 2017, 43, 80–87. [CrossRef] 35. Siow, K.S. Are Sintered Silver Joints Ready for Use as Interconnect Material in Microelectronic Packaging? J. Electron. Mater. 2014, 43, 947–961. [CrossRef] 36. Schuetz, K.; Hoerber, J.; Franke, J. Selective light sintering of Aerosol-Jet printed silver nanoparticle inks on polymer substrates. In Proceedings of the AIP Conference, Nuremberg, Germany, 15 May 2014; pp. 732–735. 37. Moya, A.; Ortega-Ribera, M.; Guimerà, X.; Sowade, E.; Zea, M.; Illa, X.; Ramon, E.; Villa, R.; Gracia-Sancho, J.; Gabriel, G. Online oxygen monitoring using integrated inkjet-printed sensors in a liver-on-a-chip system. Lab Chip 2018, 18, 2023–2035. [CrossRef] 38. Park, J.; Kang, H.J.; Shin, K.-H.; Kang, H. Fast sintering of silver nanoparticle and flake layers by infrared module assistance in large area roll-to-roll gravure printing system. Sci. Rep. 2016, 6, 34470. [CrossRef] [PubMed] 39. Yi, S.M.; Jung, J.K.; Choi, S.H.; Kim, I.; Jung, H.C.; Joung, J.; Joo, Y.C. Effect of microstructure on electrical and mechanical properties: Impurities of inkjet-printed Ag and Cu interconnects. In Proceedings of the 2008 58th Electronic Components and Technology Conference, Lake Buena Vista, FL, USA, 27–30 May 2008; pp. 1277–1281. 40. Kim, B.-J.; Haas, T.; Friederich, A.; Lee, J.-H.; Nam, D.-H.; Binder, J.R.; Bauer, W.; Choi, I.-S.; Joo, Y.-C.; Gruber, P.A.; et al. Improving mechanical fatigue resistance by optimizing the nanoporous structure of inkjet-printed Ag electrodes for flexible devices. Nanotechnology 2014, 25, 125706. [CrossRef] [PubMed]

PDF Image | Inkjet-Printing Nanoparticle Gold Silver Ink Cyclic Olefin

PDF Search Title:

Inkjet-Printing Nanoparticle Gold Silver Ink Cyclic Olefin

Original File Name Searched:

sensors-20-01333-v2.pdf

DIY PDF Search: Google It | Yahoo | Bing

Turbine and System Plans CAD CAM: Special for this month, any plans are $10,000 for complete Cad/Cam blueprints. License is for one build. Try before you buy a production license. More Info

Waste Heat Power Technology: Organic Rankine Cycle uses waste heat to make electricity, shaft horsepower and cooling. More Info

All Turbine and System Products: Infinity Turbine ORD systems, turbine generator sets, build plans and more to use your waste heat from 30C to 100C. More Info

CO2 Phase Change Demonstrator: CO2 goes supercritical at 30 C. This is a experimental platform which you can use to demonstrate phase change with low heat. Includes integration area for small CO2 turbine, static generator, and more. This can also be used for a GTL Gas to Liquids experimental platform. More Info

Introducing the Infinity Turbine Products Infinity Turbine develops and builds systems for making power from waste heat. It also is working on innovative strategies for storing, making, and deploying energy. More Info

Need Strategy? Use our Consulting and analyst services Infinity Turbine LLC is pleased to announce its consulting and analyst services. We have worked in the renewable energy industry as a researcher, developing sales and markets, along with may inventions and innovations. More Info

Made in USA with Global Energy Millennial Web Engine These pages were made with the Global Energy Web PDF Engine using Filemaker (Claris) software.

Infinity Turbine Developing Spinning Disc Reactor SDR or Spinning Disc Reactors reduce processing time for liquid production of Silver Nanoparticles.

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)