Directed assembly of nanoparticles by capillary bridging for microelectronic packaging applications
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Author
Date
2016Type
- Doctoral Thesis
ETH Bibliography
yes
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https://doi.org/10.3929/ethz-a-010822412Publication status
publishedExternal links
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Publisher
ETH ZürichSubject
CONTACT RESISTANCE + INTERMEDIATE RESISTANCE (ELECTRIC CURRENT); MICROPARTICLES + MICROSPHERES + NANOPARTICLES + NANOSPHERES (NANOTECHNOLOGY); KONTAKTWIDERSTAND + ÜBERGANGSWIDERSTAND (ELEKTRISCHER STROM); GEHÄUSE/MIKROELEKTRONIK; MIKROPARTIKEL + NANOPARTIKEL + MIKROSPHÄREN + NANOSPHÄREN (NANOTECHNOLOGIE); ADHESIVE CONNECTIONS (MICROELECTRONICS); KLEBEVERBINDUNGEN (MIKROELEKTRONIK); PACKAGING TECHNOLOGY (MICROELECTRONICS)Organisational unit
03831 - Studart, André R. / Studart, André R.
01314 - DR Materialwissenschaft / DR Materials Science
02160 - Dep. Materialwissenschaft / Dep. of Materials
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ETH Bibliography
yes
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