Skip to content
RDL
Network
Ekosistem
Uygulama değiştir
EN
Hakkımızda
SSS
Giriş yap
Başla
Ultra high resolution, low temperature, direct metal patterning by selective laser processing of solution deposited metal nanoparticles — Seung Hwan Ko (2010) | RDL Network
Back
Cite
Save
Save for later
Share
Home
Publications
Ultra high resolution, low temperature, direct metal patterning by selective laser processing of solution deposited metal nanoparticles
Shared by
Jean Mj Frechet
University of California, Berkeley
Ultra high resolution, low temperature, direct metal patterning by selective laser processing of solution deposited metal nanoparticles
Article
2010
en
Authors
+5 more
SK
Seung Hwan Ko
DY
Dong Yang
HP
Heng Pan
Discussion
(0)
Sign in
to like and join the discussion.
No comments yet. Be the first to comment.
Related publications
Article
2007
All-inkjet-printed flexible electronics fabrication on a polymer substrate by low-temperature high-resolution selective laser sintering of metal nanoparticles
Seung Hwan Ko
,
Heng Pan
,
Costas P. Grigoropoulos
,
Christine K. Luscombe
,
Jean Mj Frechet
,
Dimos Poulikakos
Article
2007
Air stable high resolution organic transistors by selective laser sintering of ink-jet printed metal nanoparticles
Seung Hwan Ko
,
Heng Pan
,
Costas P. Grigoropoulos
,
Christine K. Luscombe
,
Jean Mj Frechet
,
Dimos Poulikakos
Article
2010
High‐Throughput Near‐Field Optical Nanoprocessing of Solution‐Deposited Nanoparticles
Heng Pan
,
David J. Hwang
,
Seung Hwan Ko
,
Tabitha A. Clem
,
Jean Mj Frechet
,
D. Bäuerle
,
Costas P. Grigoropoulos
Article
2004
Fabrication of metal parts by semisolid processing using selective laser sintering rapid prototyping technique
Н. К. Толочко
,
Y Shienok
,
Ludo Froyen
,
Jean-pierre Kruth
,
Tahar Laoui
Article
2008
Lithography-free high-resolution organic transistor arrays on polymer substrate by low energy selective laser ablation of inkjet-printed nanoparticle film
Seung Hwan Ko
,
Heng Pan
,
Costas P. Grigoropoulos
,
Jean Mj Frechet
,
Christine K. Luscombe
,
Dimos Poulikakos
Discussion(0)
No comments yet. Be the first to comment.