Comparison of laser and intense pulsed light sintering (IPL) for inkjet-printed copper nanoparticle layers

Scientific Reports
Juha NiittynenMatti Mäntysalo

Abstract

In this contribution we discuss the sintering of an inkjet-printed copper nanoparticle ink based on electrical performance and microstructure analysis. Laser and intense pulsed light (IPL) sintering are employed in order to compare the different techniques and their feasibility for electronics manufacturing. A conductivity of more than 20% of that of bulk copper material has been obtained with both sintering methods. Laser and IPL sintering techniques are considered to be complementary techniques and are highly suitable in different application fields.

Citations

Oct 8, 2015·Scientific Reports·William MacNeillRajiv Malhotra
Sep 2, 2016·ACS Applied Materials & Interfaces·Yan WangZhe-Sheng Feng
Feb 10, 2016·Scientific Reports·Kate BlackPaul R Chalker
Feb 9, 2020·Materials·Vimanyu Beedasy, Patrick J Smith
Jan 9, 2020·Research : a Science Partner Journal·Kirthika Senthil KumarHongliang Ren
Aug 16, 2016·Nanotechnology·Oleg ErmakZvi Kotler
Aug 25, 2017·Advanced Materials·Maria SygletouEmmanuel Stratakis
Dec 10, 2015·Nanotechnology·A SoltaniM Mäntysalo
Apr 10, 2017·Microsystems & Nanoengineering·Behnam KhorramdelMatti Mäntysalo
Feb 24, 2021·Nanotechnology·Nastaran Hayati-RoodbariRoman Trattnig
Jun 5, 2018·ACS Applied Materials & Interfaces·Harry M CroninS Ravi P Silva
Jul 27, 2018·ACS Applied Materials & Interfaces·Shanliangzi LiuRebecca Kramer-Bottiglio
May 7, 2019·ACS Applied Materials & Interfaces·Hye Jin ParkSunho Jeong

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Methods Mentioned

BETA
MDS

Software Mentioned

Micromac
3D
PulseForge

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