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Inkjet-Printing Nanoparticle Gold Silver Ink Cyclic Olefin

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

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Sensors 2020, 20, 1333 15 of 15 41. Daggumati, P.; Matharu, Z.; Seker, E. Effect of Nanoporous Gold Thin Film Morphology on Electrochemical DNA Sensing. Anal. Chem. 2015, 87, 8149–8156. [CrossRef] 42. Matharu, Z.; Daggumati, P.; Wang, L.; Dorofeeva, T.S.; Li, Z.; Seker, E. Nanoporous-Gold-Based Electrode Morphology Libraries for Investigating Structure–Property Relationships in Nucleic Acid Based Electrochemical Biosensors. ACS Appl. Mater. Interfaces 2017, 9, 12959–12966. [CrossRef] [PubMed] 43. Wang, J.; Palecek, E.; Nielsen, P.E.; Rivas, G.; Cai, X.; Shiraishi, H.; Dontha, N.; Luo, D.; Farias, P.A.M. Peptide Nucleic Acid Probes for Sequence-Specific DNA Biosensors. J. Am. Chem. Soc. 1996, 118, 7667–7670. [CrossRef] 44. Ferguson, B.S.; Buchsbaum, S.F.; Swensen, J.S.; Hsieh, K.; Lou, X.; Soh, H.T. Integrated Microfluidic Electrochemical DNA Sensor. Anal. Chem. 2009, 81, 6503–6508. [CrossRef] 45. Park, S.; Kim, H.C.; Chung, T.D. Electrochemical analysis based on nanoporous structures. Analyst 2012, 137, 3891. [CrossRef] 46. Fang, Y.; Akbari, M.; Hester, J.G.D.; Sydänheimo, L.; Ukkonen, L.; Tentzeris, M.M. Sensitivity enhancement of flexible gas sensors via conversion of inkjet-printed silver electrodes into porous gold counterparts. Sci. Rep. 2017, 7, 8988. [CrossRef] © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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