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2篇 您的检索式:作者名="Subimal Majee"
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1Low temperature chemical sintering of inkjet-printed Zn nanoparticles for highly conductive flexible electronic components显示文摘This study illustrates an innovative way to fabricate inkjet-printed tracks by sequential printing of Zn nanoparticle ink and curing ink for low temperature in situ chemical sintering.Employing chemical curing in place of standard sintering methods leads to the advantages of using flexible substrates that may not withstand the high thermal budgets of the standard methods.A general formulation engineering method is adopted to produce highly concentrated Zn ink which is cured by inkjet printing an over-layer of aqueous acetic acid which is the curing agent.The experimental results reveal that a narrow window of acid concentration of curing ink plays a crucial role in determining the electrical properties of the printed Zn nanoparticles.Highly conductive(~10^(5)S m^(−1))and mechanically flexible printed Zn features are achieved.In addition,from systematic material characterization,we obtain an understanding of the curing mechanism.Finally,a touch sensor circuit is demonstrated involving all-Zn printed conductive tracks.Subimal Majee Mikael C.F.Karlsson Pawel Jerzy Wojcik Anurak Sawatdee Mohammad Yusuf Mulla Naveed ul Hassan Alvi Peter Dyreklev Valerio Beni David Nilsson 2021npj Flexible Electronics2021,5,1:0
2Author Correction:Low temperature chemical sintering of inkjet-printed Zn nanoparticles for highly conductive flexible electronic components显示文摘The original version of this Article omitted from the author list the 3rd author Pawel Jerzy Wojcik from redoxme AB,Research&Development Department,Norrköping,Sweden(Affiliation#3)and 7th author Peter Dyreklev from RISE Research Institutes of Sweden,Norrköping,Sweden(Affiliation#1).Subimal Majee Mikael C.F.Karlsson Pawel Jerzy Wojcik Anurak Sawatdee Mohammad Yusuf Mulla Naveed ul Hassan Alvi Peter Dyreklev Valerio Beni David Nilsson 2021npj Flexible Electronics2021,5,1:0
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