278
S. Papazoglou and I. Zergioti
Table 9.1
Overview of works on LIFT
Transferred material
Substrate
Feature size
(µm)
Laser source
Wavelength Pulse
duration
Application
Author, year
References
Biomaterials
Antibodies
Paper
KrF excimer
248 nm
10 ns
Biochemical
analysis
Katis (2014)
[105]
Biomaterials such as
enzyme patterns
Glass
10–100
Hybrid dye/KrF
excimer
248 nm
0.5 ps
Biosensors
Zergioti (2005)
[47]
Mesoscopic patterns of
viable Escherichia coli
Si, glass, and
nutrient agar
plates
<10
ArF excimer
193 nm
Biosensors
Ringeisen (2002) [92]
Salmon sperm DNA
Poly-L-lysine
coated glass slides
55–65
Nd:YAG
355 nm
10 ns
Biosensors
Fernandez-Pradas
(2004)
[95]
DNA solution
GOPTS
functionalized
surfaces
100
Nd:YAG
266 nm
10 ns
Capacitive
biosensor
Tsekenis (2012)
[107]
Lambda phage DNA
Glass
100
KrF
248 nm
500 fs
Genome
functions
Karaiskou (2003) [94]
Cells
Glass
50–80
Nd:YAG
1064 nm
30 ns
High throughput
cell printing
Guillemot (2010) [98]
Skin cells and human
stem cells
Glass
80–140
Nd:YAG
1064 nm
8–9 ns
Human skin
regeneration
Koch (2010)
[108]
Peptide-based
microarrays
Au-coated glass
20–150
KrF
248 nm
15 ns
Molecular
electronics
Dinca (2007)
[88]
Cell containing
collagen
Glass slide
Nd:YAG-laser
1064 nm
8–9 ns
Tissue
engineering
Michael (2013)
[96]
(continued)
S. Papazoglou and I. Zergioti
Table 9.1
Overview of works on LIFT
Transferred material
Substrate
Feature size
(µm)
Laser source
Wavelength Pulse
duration
Application
Author, year
References
Biomaterials
Antibodies
Paper
KrF excimer
248 nm
10 ns
Biochemical
analysis
Katis (2014)
[105]
Biomaterials such as
enzyme patterns
Glass
10–100
Hybrid dye/KrF
excimer
248 nm
0.5 ps
Biosensors
Zergioti (2005)
[47]
Mesoscopic patterns of
viable Escherichia coli
Si, glass, and
nutrient agar
plates
<10
ArF excimer
193 nm
Biosensors
Ringeisen (2002) [92]
Salmon sperm DNA
Poly-L-lysine
coated glass slides
55–65
Nd:YAG
355 nm
10 ns
Biosensors
Fernandez-Pradas
(2004)
[95]
DNA solution
GOPTS
functionalized
surfaces
100
Nd:YAG
266 nm
10 ns
Capacitive
biosensor
Tsekenis (2012)
[107]
Lambda phage DNA
Glass
100
KrF
248 nm
500 fs
Genome
functions
Karaiskou (2003) [94]
Cells
Glass
50–80
Nd:YAG
1064 nm
30 ns
High throughput
cell printing
Guillemot (2010) [98]
Skin cells and human
stem cells
Glass
80–140
Nd:YAG
1064 nm
8–9 ns
Human skin
regeneration
Koch (2010)
[108]
Peptide-based
microarrays
Au-coated glass
20–150
KrF
248 nm
15 ns
Molecular
electronics
Dinca (2007)
[88]
Cell containing
collagen
Glass slide
Nd:YAG-laser
1064 nm
8–9 ns
Tissue
engineering
Michael (2013)
[96]
(continued)
