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 ƒ  ½ ¨ 7 Hë  H  Sae Mulli (The Korean Physical Society), Volume 51, Number 5, 2005¸   11 Z 4, pp. 341∼344

PMMA õ u § T “ Ó Þ” X ¢ OLED “ Ó Þ M “ ˜ m Œ º8 ý š ¼Ê Ýù o Ú • ¤X N Ë

9

 ý — ¡) כ · ƒ ‘ š ø ¶ B¦  · T 0 ï F ‘ š · ™ »| ¡0 ï F · T  G ž B¬ £

 â

· ¡ ¤ @ /† < Ɠ §  ƒ  õ † < Æ@ /† < Æ Ó ü t o † < Æõ , @ /½ ¨ 702-701 (2005¸   10 Z 4 15{ 9  ~ à Î6 £ §)

PMMA (Poly Methyl Meta Acrylate) “ ¦ì  r   Ó ü t| 9 _  Ï ã J] X Ò  ¦ s  Ä »o ˜ Ð  ± ú 6 £ §`  ¦ s 6   x €   OLED (Organic Light Emitting Diode) Ä »l Ó ü t| 9 \ " f  š ¸  H y n C_  „  ì ø Í \  _ ô  Ç ™ èz  ´`  ¦ } Œ •  H “ ¦È Òõ Ö  ¦ ~ Ã Ì }

Œ

•½ ¨› ¸\  ¦ + þ A$ í ½ + É Ã º e ”  . ì  r í ß –l  (diffuser)\  ¦ : Ÿ x õ ô  Ç y n C (He-Ne laser)`  ¦ Ä »o \  È Òõ r &  0 Au \   

 É

r È Òõ Ö  ¦ _     o\  ¦ 8 £ ¤& ñ “ ¦, ¢ ¸ PMMA  ïh A ) a Ä »o _  PMMA8 £ x A á ¤ Ü ¼– Ð È Òõ  r †   y n C_  0 Au \ 



 É r È Òõ Ö  ¦ _     o\  ¦ 8 £ ¤& ñ # Œ q “ §K  ‘ : r   õ  PMMA  ïh A ) a  â Ä º „  ^ ‰& h “   È Òõ Ö  ¦ \ " f r « Ñ _

  © œI \     6 ∼ 18 %& ñ • ¸ † ¾ Ó © œ÷ &  H  כ `  ¦ › ' a ¹ 1 Ï % i  . s  z  ´+ « >  õ   H Ï ã J] X Ò  ¦ s  ± ú “ É r “ ¦ì  r   ~ à Ì} Œ •

` 

¦ s 6   x €   OLED n Û ¼e  ¦ Y Us  l ó ø Í½ ¨› ¸\ " f È Òõ $ í `  ¦ † ¾ Ó © œr ~  ´ à º e ” 6 £ §`  ¦ ˜ Ð# ŒÅ ғ ¦ e ”  .

PACS numbers: 42

Keywords: “ ¦È Òõ Ö  ¦ } Œ •, Ä »l µ 1 Ï F g n Û ¼e  ¦ Y Us  (OLED)

I. " e  ] Ø

OLED _  l ó ø Í½ ¨› ¸\  ¦ ˜ Ѐ   x 9 \ " f Ò'  Cathode (F K 5

Å q), Ä »l Ó ü t| 9  (Organic material), ITO (Indium-Tin Ox- ide), SiO

2

, Glass _  í  H " f– Ð C \ P ÷ &# Q e ”  . Ä »l Ó ü t _  Ï ã J ] X

Ò  ¦ s  €  • 1.7, ITO_  Ï ã J] X Ò  ¦ s  1.8 ∼ 2.1, Ä »o l ó ø Í_  Ï

ã J] X Ò  ¦ s  1.51& ñ • ¸s Ù ¼– Ð Ä »l Ó ü t| 9 \ " f Ò q t$ í  ) a y n C_  €  • 51 %  H Ä »l Ó ü t| 9  } Œ •õ  ITO ] X 8 ú ¤ } Œ •  s \ " f • ¸  › ' a (waveguide) + þ AI – Ð „   ÷ &“ ¦ €  • 49 % Ä »o l ó ø ÍÜ ¼– Ð È

Òõ ÷ &  H X < Ä »o l ó ø Íõ  / B N l ü <_   â > \ " f „  ì ø Í  _  K

  r  31.5 %_  y n Cs  ™ èz  ´÷ &Ù ¼– Ð Ò q t$ í  ) a y n C_  €  • 17.5

% ë ß –s  / B N l  ×  æ Ü ¼– Ð  4 R  š ¸>   ) a  . s    ± ú “ É r µ 1 Ï F g ´ ò Ö

 ¦ _  ×  æ כ ¹ô  Ç " é ¶ “   ×  æ _     H y n Cs  ITOü < ° ú  “ É r “ ¦ Ï ã J] X  Ò

 ¦ ~ à Ì} Œ •\ " f  © œ@ /& h Ü ¼– Ð $  Ï ã J] X Ò  ¦“   Ä »o l ó ø ÍÜ ¼– Ð : Ÿ x õ

K   ÷ &l  M :ë  H s  . ITO@ /^ ‰Ó ü t| 9 – Ð ZnOü < Ä »l  È Ò

"

î „  F G“   PEDOT (poly (3,4-ethylenedioxythiophene)) 1

p

x s  e ” |     ZnO  H Ï ã J] X Ò  ¦ s  2.0 & ñ • ¸s “ ¦ q $ † ½ Ó s

 ITO˜ Ð  Z  }   @ /î ß –s  | ¨ c à º \ O “ ¦, PEDOT  H  f ” 

>

hµ 1 Ï ”  ' Ÿ  ×  æ“   Ó ü t| 9 s  .   ² D G Cathode, Organic, ITO (Indium-Tin Oxide)8 £ x[ þ t`  ¦ Õ ª@ /– Ð ¿ º“ ¦ Ä »o  ³ ð€  \    s

ß ¼– Ð E $ ™Ý ¼\  ¦ `  ¦ o   , Ä »o ü < ITO} Œ •  s \  “ ¦ È Òõ  Ö

 ¦`  ¦ t €  " f $  Ï ã J] X Ò  ¦“   Ó ü t| 9 `  ¦ ¶ ú š{ 9 r & " f È Òõ Ö  ¦

`

 ¦ Z  } s   H ~ ½ ÓZ O s  @ /¿ º÷ &% 3  .  s ß ¼– Ð E $ ™Ý ¼ ~ ½ ÓZ O `  ¦  

E-mail: [email protected] Tel: 053-950-5324, Fax: 053-952-1739

6  

x ô  Ç z  ´+ « >  õ  ˜ Г ¦÷ &% 3 Ü ¼  [1] s  ~ ½ ÓZ O “ É r / B N& ñ õ & ñ s

 4 Ÿ ¤ ¸ ú šô  Ç é ß –& h `  ¦ t “ ¦ e ”  . $  Ï ã J] X Ò  ¦ Ó ü t| 9 `  ¦  6   x

  H ~ ½ ÓZ O \ " f  H # Œ Q t  Ó ü t| 9 s  ] jî ß –÷ &% 3 Ü ¼   f ”  ë

ß –7 á ¤ ½ + Éë ß –ô  Ç   õ   H ˜ Г ¦÷ &t  · ú §“ ¦ e ”  . \ # Q– Ð 0 q (silica aerogel) _   â Ä º Ï ã J] X Ò  ¦ s  n = 1.01 ∼ 1.1 & ñ • ¸s Ù ¼– Ð “ ¦ È

Òõ Ö  ¦ ½ ¨› ¸\  ¦ 0 AK  a % ~“ É r Ó ü t| 9 s   “ ¦“ : r, “ ¦· ú š`  ¦ כ ¹½ ¨ 



 H / B N& ñ (supercritical drying)s  Ÿ í† < Ê÷ &Ù ¼– Ð # Q 9¹ ¡ § s  e ” 



. ì ø ̀  \  “ ¦ì  r   Ó ü t| 9 “   PMMA (630nm\ " f Ï ã J] X Ò  ¦ s  1.49)  H Û ¼— 2 ; ïh A (spin coating), spray, dipping 1 p x  € ª œ ô

 Ç ~ ½ Ód ” Ü ¼– Ð } Œ •`  ¦ + þ A$ í r ~  ´ à º e ”   H  © œ& h `  ¦ t “ ¦ e ”  .



 " f ‘ : r ƒ  ½ ¨\ " f  H Û ¼— 2 ; ïh A ~ ½ Ód ” Ü ¼– Ð PMMA Ê ê} Œ •

`

 ¦ + þ A$ í # Œ „  ì ø Í  ´ òõ \  ¦ y Œ ™™ èr &  µ 1 Ï F g ´ òõ \  ¦ 7 £ x r  v

  H z  ´+ « >`  ¦ r • ¸ % i  . ì  r í ß –l  (diffuser)\  ¦ : Ÿ x õ ô  Ç y n C (He-Ne laser)`  ¦ Ä »o \  È Òõ r &  0 Au \    É r È Òõ Ö  ¦ _ 



  o\  ¦ 8 £ ¤& ñ “ ¦, ¢ ¸ PMMA  ïh A ) a Ä »o _  PMMA8 £ x A

á

¤ Ü ¼– Ð È Òõ  r †   y n C_  0 Au \    É r È Òõ Ö  ¦ _     o\  ¦ 8 £ ¤

&

ñ # Œ q “ §K  ‘ : r   õ  PMMA  ïh A ) a  â Ä º „  ^ ‰& h 

“

  È Òõ Ö  ¦ \ " f r « Ñ_   © œI \     6 ∼ 18 %& ñ • ¸ † ¾ Ó © œ

÷

&  H  כ `  ¦ › ' a ¹ 1 Ï % i  . s  z  ´+ « >  õ   H Ï ã J] X Ò  ¦ s  ± ú “ É r “ ¦ ì

 r   ~ à Ì} Œ •`  ¦ s 6   x €   OLED n Û ¼e  ¦ Y Us  l ó ø Í½ ¨› ¸\ " f È

Òõ $ í `  ¦ † ¾ Ó © œr ~  ´ à º e ” 6 £ §`  ¦ ˜ Ð# ŒÅ ғ ¦ e ”  .

II. ÷ m Ç] M öX ê sV  õ m Í U ê s0 n É

PMMA 6   xÓ  o“ É r PMMA (LG MMA F g † < Æ 1 p x/ å L) ü < Ä »l  6

 

x B “   THF (tetrahydrofuran) (Sigma Aldrich,99+ %`  ¦

-341-

(2)

-342- ô  Dz D GÓ ü t o † < Æ rt  “D hÓ ü t o ”, Volume 51, Number 5, 2005¸   11 Z 4



6   x)\  ¦ 1 : 10 _  Á º>  q – Ð ™ D ¥ ½ + Ë # Œ €  • 60

C _  \ P ó ø Í 0

A\ " f €  • ô  Ç r ç ß – 1 l x î ß – ¸ ú ˜ [ O # Q" f ë ß –Ž  H  . Õ ªo “ ¦ Û ¼— 2 ;



ïh A ~ ½ Ód ” Ü ¼– Ð Ä »o  0 A\  PMMAÊ ê} Œ • 8 £ x`  ¦ + þ A$ í # Œ  © œ

“

: r \ " f ´ ú ˜o €   r « Ñ ¢ - a$ í  ) a  . OLED_  Ä »l Ó ü t| 9 \ " f ë

ß –[ þ t # Q”   y n C (& h F g " é ¶)“ É r  € ª œô  Ç y Œ •• ¸– Ð ì  r í ß –÷ &# Q Ä »o €  

\

 { 9  ô  Ç . # Q‹ "  F g‚  [ þ t“ É r e ” > y Œ •• ¸ s  © œÜ ¼– Ð ì  r í ß –÷ &

#

Q Ä »o €  \  { 9   l  M :ë  H \  „  ì ø Í  ‰ & ³ © œs  µ 1 ÏÒ q t÷ &# Q

•

¸  › ' a + þ AI – Ð ( 4 R y Œ ™Ü ¼– Ð+ ‹ Ä »´ òô  Ç n Û ¼e  ¦ Y Us 6   x y n C Ü

¼– Ð  6   x ½ + É Ã º \ O >   ) a  . OLED\ " fü < 1 l x{ 9  >   € ª œ ô

 Ç y Œ •• ¸– Ð ì  r í ß –÷ &  H y n C`  ¦ r « Ñ €  \  { 9   r v l  0 AK " f



 H r « Ñ\  ¦ ì  r í ß –l  (diffuser)\  x 9 ‚ à Ìr &    ) a   [3]. s X O 

>

 † < ÊÜ ¼– Ð+ ‹ Y Us $  (He-Ne Laser 632.8nm)\ " f  “ : r y n C s

 ì  r í ß –l \  _ K   € ª œô  Ç y Œ •• ¸– Ð ì  r í ß –÷ &# Q r « Ñ\  { 9  

>   ) a  . > h| Ä Ì& h “   z  ´+ « > © œu • ¸ Fig. 1\  Å Ò# Q4 R e ” 



.

r

« Ñ\  { 9     H y n C ×  æ \  e ” > y Œ • s  © œ_  y Œ •• ¸– Ð { 9  

  H y n C“ É r „  ì ø Í \  _ K  r « Ñ „  €  Ü ¼– Ð È Òõ ÷ &t  3 l w ô  Ç



. Fig. 2\  Ä »o €  õ  PMMAÊ ê} Œ •8 £ x s  + þ A$ í  ) a r « р   Ü

¼– Ð È Òõ ÷ &  H F g‚  [ þ t _  s \  ¦ q “ § # Œ Õ ª 9 Z  ~ € Œ ¤ .

PMMA 8 £ x \  _ K  y n Cs  — ¸ t Ù ¼– Ð PMMA + þ A$ í  ) a r 

«

Ñ_   â Ä º „  €  Ü ¼– Ð È Òõ ÷ &# Q  š ¸  H y n C_  € ª œs  ´ ú §6 £ §

`

 ¦ ˜ Ð# Œ Šғ ¦ e ”  . ‘ : r z  ´+ « >\ " f  H r « р  `  ¦ : Ÿ x õ ô  Ç y n C s

 # Q‹ "  y Œ •• ¸– Ð r « р  `  ¦  4 R  š ¸  H t \  ¦ › ' a8 £ ¤ l  0 A K

" f & ñ x 9  0 Au  › ¸] X l  (precision positioner, ì  r K 0 p x 0.1

Fig. 1. Schematic figure of the experimental set-up.

Fig. 2. Dispersion of the light source through the bare glass (left) and the glass with a PMMA film (right).

mm)\  ¦  6   x % i  . 0 Au › ¸] X l \   ҂ Ã Ì  ) a F g H s ^  ¦ õ  F g

•

¸>  (photometer)\  ¦ s 6   x €   : £ ¤& ñ ~ ½ ӆ ¾ ÓÜ ¼– Ð  š ¸  H y n C _

 [ jl \  ¦ › ' a8 £ ¤ ½ + É Ã º e ”  . r « р  \  à ºf ” Ü ¼– Ð { 9     H y n

C“ É r  _  — ¸¿ º r « Ñ\  ¦ : Ÿ x õ  l  M :ë  H \  ×  æ € © œ\ " f  © œ

 H ’    ñ\  ¦ % 3 `  ¦ à º e ”  . 0 Au › ¸] X l \  ¦ s 6   x # Œ þ j@ / F g

•

¸ ÷ &  H ×  æd ” \ " f ý aÄ º– Ð 0.5 mm ç ß –  Ü ¼– Ð s 1 l x  9 F

g • ¸\  ¦ ì ø Í4 Ÿ ¤ 8 £ ¤& ñ % i “ ¦, 8 £ ¤& ñ s  = å Q  “ ¦ ×  æd ” \  [  t   M ® o

`

 ¦ M : " é ¶ A  þ j@ / F g • ¸– Ð [  t  š ¸  H \  ¦ S X ‰ “   % i  . ×  æd ” 

\

" f ý aÄ ºA á ¤ ’    ñ_  — ¸€ ª œ“ É r  _  @ /g A& h s % 3 “ ¦ % ƒ6 £ § 0 A u

“   ×  æd ” Ü ¼– Ð [  t   M ® o`  ¦ M :_  ’    ñ_  [ jl   H " é ¶ A _  ’    

ñü < s \  ¦ ˜ Ðs t  · ú §€ Œ ¤ .

III. ÷ m Ç] M ö+ s ÇÊ Ý õ m Í Ä Z ØV Ä

Ä

»o ü < PMMA_  y n C_   © œ\    É r Ï ã J] X Ò  ¦ _     o



A  Fig. 3\  Å Ò# Q4 Re ”  .  6   x ô  Ç Ä »o _   © œ\    É r Ï

ã J] X Ò  ¦ _     o  H Ellipsometer (SOPRA , GES5)\  ¦  6   x

# Œ 8 £ ¤& ñ % i Ü ¼ 9 PMMA\  @ /ô  Ç  כ “ É r ‚ à Г ¦ë  H‰  ³_  ° ú כ

`

 ¦ “  6   x % i   [2].

Fig. 4 ü < 5  H 0 Au \    É r È Òõ Ö  ¦ _     o\  ¦ ˜ Ð# ŒÅ ғ ¦ e ”

 . Fig. 4_    õ   H Ä »o l ó ø Í (y n C_   © œs  630 nm\ 

"

f Ï ã J] X Ò  ¦ s  1.51) 0 A\  PMMA} Œ •`  ¦ { 9 ˜ 2 ³  â Ä º\  @ /ô  Ç

 כ

s “ ¦ Fig. 5_    õ   H $ 3 % ò (quartz) l ó ø Í (y n C_   © œ s

 630 nm\ " f Ï ã J] X Ò  ¦ s  1.54) 0 A\  PMMA} Œ •`  ¦ `  ¦ 2 ;  â Ä

º\  @ /ô  Ç  כ s  .  6   x ) a r « Ñ_  PMMA} Œ •_  ¿ ºa   H €  • 1.4 × 10

−2

s  9 Ä »o   H 1 mm\  ¦  6   x % i  . à ºf ”  { 9  

\

  î  r ×  æ € © œ_  È Òõ Ö  ¦ \ " f — ¸¿ º PMMA} Œ •`  ¦ { 9 ˜ 2 ³  â Ä

º Ä »o €  ˜ Ð  €  •ç ß – Z  }“ É r ° ú כ`  ¦ ˜ Ð# ŒÅ ғ ¦ e ”  . à ºf ” { 9 



_   â Ä º Fresnel~ ½ Ó& ñ d ” \ " f ì ø Í Ö  ¦ s  R = [(1 - n)/(1 + n)]

2

Ü ¼– Ð Å Ò# Qt Ù ¼– Ð Ï ã J] X Ò  ¦ s  1.51“   Ä »o _   â Ä º 4.13

Fig. 3. Wavelength dependence of the refractive index

for the glass and PMMA.

(3)

 ƒ  ½ ¨ 7 Hë  H  PMMA\  ¦ s 6   x ô  Ç OLED6   x l ó ø Í½ ¨› ¸_  È Òõ Ö  ¦ 8 £ ¤& ñ – C < ª[ O  1 p x -343-

Fig. 4. Position dependence of the transmittance of light for the bare glass and the glass with a PMMA film.

%  ì ø Í ÷ &Ù ¼– Ð È Òõ Ö  ¦“ É r @ /| Ä Ì 96 %  ) a  . ¢ ¸ô  Ç Ï ã J] X  Ò

 ¦ s  Ä »o ˜ Ð   H $ 3 % ò (quartz)_   â Ä º È Òõ Ö  ¦ s  €  • ç

ß – & f ” `  ¦ · ú ˜ à º e ”  . Fig. 4ü < 5_  z  ´+ « >° ú כ\ " f & ñ $ í & h  Ü

¼– Ð s ü < ° ú  “ É r \ V8 £ ¤ s  { 9 u † < Ê`  ¦ ˜ Ð# ŒÅ ғ ¦ e ”  . ×  æ € © œ\ 

"

f  H PMMA } Œ •s  e ”   H  â Ä ºü < Ä »o  l ó ø Íë ß –_   â Ä º   _

 q 5 p w ô  Ç y n C_  [ jl – Ð ˜ Ð# Œï  r  .

Ä

»o l ó ø Í_   â Ä º 0 Au \    É r F g • ¸ PMMA} Œ •`  ¦ { 9  +

À

I`  ¦  â Ä º „  ^ ‰& h Ü ¼– Ð “ ¦Ø Ô>  Ä »o  l ó ø Í ˜ Ð  €  •ç ß – Z  }

>

    “ ¦ e ”  . $ 3 % ò l ó ø Í_   â Ä º• ¸ 1 l x{ 9 ô  Ç  ⠆ ¾ Ó$ í `  ¦

˜

Ðs “ ¦ e ” Ü ¼  Õ ª s  Ä »o l ó ø Í˜ Ð   p u`  ¦ ˜ Ð# ŒÅ ғ ¦ e ”

 . s   H $ 3 % ò l ó ø Í_  Ï ã J] X Ò  ¦ s  Ä »o l ó ø Í˜ Ð  ß ¼l  M : ë

 H \       H s – Ð [ O " î ½ + É Ã º e ”  . ¿ º  â Ä º — ¸¿ º ×  æ

€

© œ\ " f b  # Q”   0 Au \ " f_  F g • ¸ s  & f ” `  ¦ ^  ¦ à º e ” 



 H X < s   H PMMA } Œ •s  \ O `  ¦  â Ä º & h & h  „  ì ø Í \  _ K  • ¸

 › ' a + þ AI – Ð ™ èY > | ¨ c y n C[ þ t s  ´ ú §s  — ¸ t l  M :ë  H \  { 9 # Q



  H ‰ & ³ © œÜ ¼– Ð [ O " î ½ + É Ã º e ”  . F g H s ^  ¦ _  f ”  â s  €  • 1 mm & ñ • ¸– Ð z  ´] j_  y n C_  [ jl   H s & ñ • ¸– Ð ( t   H y n C_ 

½

+ Ëí ß –e ” \  Ä »_ K   ô  Ç .

€



• 8 mm t  ( ”   y n C_  ½ + Ëí ß –`  ¦ €   y Œ •y Œ • 6 %(Ä »o  l

ó ø Í), 18 %($ 3 % ò l ó ø Í)_  7 £ x ´ òõ \  ¦   Í Ç r`  ¦ ^  ¦ à º e ”

 . 0 A ° ú כ“ É r r « Ñü < F g H s ^  ¦  s _   o  50 mms 

“

¦ 8 mm t  ( t   H y n C`  ¦ ½ + Ëí ß –Ù þ ¡Ü ¼Ù ¼– Ð  _  & h  F g " é ¶ (OLED " é ¶…  ;\ " f  š ¸  H y n C)\ " f „  ^ ‰& h Ü ¼– Ð @ /| Ä Ì 7

y Œ •

•

¸– Ð ( ”   y n C`  ¦ ½ + Ëí ß –ô  Ç   õ – Ð ^  ¦ à º e ”  .

{ 9

ì ø Í& h “   OLED ½ ¨› ¸\ " f Ä »o  (t ∼ 1 mm, n = 1.51), ITO(t ∼ 100 nm, n ∼ 1.8), Ä »l  Ó ü t| 9 _  8 £ x (t ∼ 0.1nm, n = 1.6 ∼ 1.8), ì ø Í  cathode (\ V Mg : Al Li : Al)\  ¦



6   x   H X < cathode ¢ - a# 4 ô  Ç ì ø Í ^ ‰– Ð & ñ Ù þ ¡`  ¦ M : Ä » l

 µ 1 Ï F g 8 £ x \ " f µ 1 ÏÒ q tô  Ç y n Cs  l ó ø ÍÜ ¼– Ð  š ¸  H q Ö  ¦“   ´ ò Ö

 ¦ (coupling-out efficiency)“ É r η

ext,pl

2n12

org

– Ð Å Ò# Q”    [4]. # Œl " f Ä »l Ó ü t _  Ï ã J] X Ò  ¦ s  n

org

∼ 1.7 s Ù ¼– Ð s  ´ ò

Fig. 5. Position dependence of the transmittance of light for the bare glass and the glass with a PMMA film.

Ö

 ¦`  ¦ K    l  0 Aô  Ç # Œ Q t  ~ ½ Óî ß –s  ] jr ÷ &% 3 t ë ß –   f ”

 z  ´6   x  o÷ &t  3 l w “ ¦ e ”   [1, 5]. ‘ : r z  ´+ « >\ " f s 6   x ô  Ç PMMA } Œ •“ É r Õ ª $ í  © œ/ B N& ñ s  ç ß –é ß – “ ¦ 0 A_    õ \ " f ˜ Ð

“

   ü < ° ú  s  „  ì ø Í \  _ K  ™ èz  ´÷ &  H y n C`  ¦ — ¸ Šҍ  H ´ ò õ

  p u Ü ¼– Ð · ú ¡Ü ¼– Ð OLED6   x “ ¦ È Òõ } Œ •Ü ¼– Ð Ä »6   x ½ + É  כ Ü

¼– Ð l @ /  ) a  . Õ ª Q  OLED6   x Ü ¼– Ð Ø  æì  r ½ + É & ñ • ¸– Ð } Œ • _

 ç  H{ 9 $ í `  ¦ a % ~ >    H ë  H ] j z Œ ™  e ”  . ‘ : r z  ´+ « >\ " f



 H Ê ê} Œ •_  + þ AI – Ð $ í  © œ`  ¦ # Œ Õ ª ç  H{ 9 $ í \  @ /ô  Ç ¨ î 

s

À Ò# Q4 R e ” t  · ú §€ Œ ¤l  M :ë  H \  · ú ¡Ü ¼– Ð $ í  © œ  ) a } Œ •_  Ó ü t$ í

`

 ¦ 7 á §  8 ƒ  ½ ¨K   ½ + É  כ Ü ¼– Ð Ò q ty Œ •  ) a  . Õ ª Q  PMMA 8

£

x \  _ ô  Ç y n C_  7 £ x ´ òõ  { 9 7 £ x ÷ &% 3 Ü ¼Ù ¼– Ð s \  @ /ô  Ç ë

 H ] j K   ÷ &€   Õ ª Ä »6   x$ í s  ß ¼ “ ¦ ½ + É Ã º e ”  

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[1] S. M¨ oller and S.R Forrest, J. of Appl. Phys 91, 3324 (2002).

[2] LG MMA, Reference Table (2005).

[3] S. Reich, Am. J. of Phys 51, 469 (1983).

[4] C. F. Madigan, M.-H. Lu and J. C. Sturm, Appl.

Phys. Lett 76, 1650 (2000).

[5] Young-Jae Lee, et. al. Appl. Phys. Lett. 82, 3779 (2003).

High Transmittance of a PMMA-Coated Film on Glass or Quartz

Hong-Sub Bae, Jong-Ku Park, H. R. Lee, Do-Hyeong Kim and Ilsu Rhee

Department of Physics, Kyungpook National University, Daegu 702-701

(Received 15 October 2005)

Some of the light emitted by the organic material in an poly methyl meta acrylate (OLED) is totally reflected during the propagation to the front glass of the OLED due to the materials of the constituent films with high refractive indices. Consequently, the coupling-out efficiency of an OLED is just about 17 %. If a film of low refractive index is sandwiched between the oxide layer and the glass, the coupling-out efficiency will be increased by reducing the total refraction that occurs during the propagation of light from the oxide layer to the glass. We formed a organic light emitting diode (PMMA) layer on the glass or quartz and measured the transmittance of the light.

We found that the transmittance of the light was increased up to 6 ∼ 18 % comparied with that of the glass. We can expect the coupling-out coefficient of OLED to be increased when a PMMA film is sandwiched between the oxide layer and the glass.

PACS numbers: 42

Keywords: PMMA, High transmittance film, OLED

E-mail: [email protected]

수치

Fig. 2. Dispersion of the light source through the bare glass (left) and the glass with a PMMA film (right).
Fig. 5. Position dependence of the transmittance of light for the bare glass and the glass with a PMMA film.

참조

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