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TRANSCRIPT
1/33
.
p.16 46
6-1-1
2/33
20 6 24
3/33
H20
~5nm 1200 0.0198
/ 100,000%10% 0.03g/h cm2 100g/
5mm
0.5g/cm3 75%
2,000 2/g
H22200,000% 10%
0.06g/h cm2 1,000g/10mm
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.
.
.
.
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. . ..
..
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3
)
2009mm
1cm
(1000mmx(100mmx100 100mmx
H19 H20H18
100x100mm200920mmx20mm
100mmx100mm
100mm
H21 H22
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SWCNT
we A4
A4
CVDCVD
C SWCNT
SWCNT
C SWCNT
SWCNT
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9/33
)
)
)
) )
10/33
CVD
CVD
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Ni-Fe-CrCNT 1 20
12/33
Fe
Fe
CVD
13/33
.- -
Fe-Ni-Cr CNTFe CNT
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.
.
.
. .
15/33
16/33
CVD
A4
17/33
:1g 1
18/33
CVD
19/33
.- -
A4
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.
.
.
. .
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- -
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LED
FTIR
MV.
4000300020001000
Abs
orba
nce
(A. U
.)
Wavelength (cm-1)
Formation (x100)
Growth
- -
SWCNT CVD
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CVD
0
200
400
600
800
1000
1200
[um
]
11000
21000
31000
410000
/
[m
]
[min] /
CNT 10
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100 nm
25/33
1 cm1 cm(Pizza)
( )
(mm
)
0 20 40 60 80
05.
04.
03.
02.
01.
0
(Pizza)
( )
(mm
)
0 20 40 60 80
05.
04.
03.
02.
01.
0CVD
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.- -
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.
.
.
. .
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C
SWCNTSWCNT
As-grown SWCNT
D.N. Futaba et al, Nature Materials (2006).
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2240m2/g
30/33
. .- -
C
31/33
( )
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- -
33/33
C
( 3)
CNT