Evolution of Electronic Devices
Simon D, Electronic Device for Nano-CMOS Era, Pan Stanford Publishing
ASPEK KLASIFIKASI DAN PERKEMBANGAN
TEKNOLOGI BAHAN
TEKNOLOGI PROSES
Silicon Processing, FabrikasidanPackagingIC
TEKNOLOGI DESAIN danSIMULASI
TEKNOLOGI SISTEM INTEGRASI
TEKNOLOGI APLIKASI
TEKNOLOGI UJI danVERIVIKASI
TEKNOLOGI KOMPUTASI DAN PEMODELAN
KajianElektronikaMolekul
CabangKonsep
Nanoteknologi
FenomenaDasarTeknologiNano
Photons
L > 10 nm
l=0.1-10 mm
Phonons
L=10-100 nm
l=1 nm
Electrons
L=10-100 nm
l=10-50 nm
L---Mean free path
l---wavelength
Molecules
L = 1-100 nm
l=1 nm
G Chan, MIT -Cambrige
Solar Cell: Applied Nanotech
Silicon-Based Material Solar Cell
Efficiency up to 14-25% (market)
High cost material
High cost processing
Long life time
DSSC (Dye-Sensitized Solar Cell)
Natural Dye-Sensitized
Efficiency under 5% (lab)
low cost materials
Low cost processing
Flexible substrates
BiomimicApproach
Energy Conversion to Electricity
DSSC
Sunlight
Electric
energy
chemical
energy
Photosynthesis
V
Chlorophyll extraction of papaya
and jatropha leaves in DSSC
SholehHP, EkaMaulana, et.al. Organic Solar Cell in DSSC 2013
NanomaterialProcessing
Future Technology:
Applied Science of Nanotechnology in Engineering, Dec 21
st
2013
PROSES FABRIKASI
References
M. P. Groover, 2002. “Fundamentals of Modern Manufacturing
2/e”, John Wiley & Sons, Inc.
EkaMaulana, Applied Science of Nanotechnology in
Engineering Seminar, Dec 21
st
2013
SholehHP, EkaMaulana, et.al. Organic Solar Cell in DSSC 2013
Simon D, Electronic Device for Nano-CMOS Era, Pan Stanford
Publishing
G Chan, MIT -Cambrige