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§Ú»{¬°¦b±µ¨ü§¹¾ãªºª«²z¾Ç¬ì°V½m¥H¤Î¾i¦¨¿W¥ß¾Ç²ßªº¯à¤O«á¡AÀ³·í¯à¦Û¥Ñ±´¯Á³\¦h¥þ·sªºª¾ÃÑ¡A¨Ãµo´§¦Û¨­¸ó»â°ì¬ì§Þ¾ã¦Xªº±Mªø¥H¤Î·U®À·U«iªº¨Dª¾±ý»P¥ø¹Ï¤ß¡CÀ³¸Ó¦b¾Ç¥Í®É´Á§Y¶}©lµ½¥Î®É¶¡¡A¦h¤è¯AÂy¿Ä·|¨Ã½a¨s¨Æ²zªººë¯«¬O¤£¥i©Î¯Êªº¡A§zÔ¬§]´Ç¥Bº©µL¥Ø¼Ðªº¬ãŪ¤è¦¡°£¤F®ö¶O®É¶¡¤§¥~µL¬Æ¥i¨ú¤§³B¡C­@¤ß¡B²`¯Ñ»P³Ð·N«h¬O°È¥²ªø´Á°ö¾iªº¤£¤Gªkªù¡C

¤@½g©å§@°eµ¹¦P¾Ç­Ì»â²¤

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º}ªy³ê§A¶iªù  ¦@¨É³o³õ­¯¥Í²±®b  ·sÆCªº¨HÀq¥Ì¾J¤J³ï  ÀH«á  ¿â¹L¾®º¢ªº©]¹õ  ³Î±Ë¬y¦~¸Ìªº¨¥»y¦p´  §A®¨µM¬ï±ô¹LÂøÌ¤H¸s  ³w¦æ»°­u»÷ÀRªº¤æ«Ç   ³´¸¨©ó­ß·Q¥æ¿ù½¯©µªºªÅ¶¡  ¤ÏÂб´¯Á¤@ºØ¶}®©ªº¥i¯à

¿ðºÎªºµó¿O¹jµ¡º¯³zµÛ·L´H  ¯B¹Ð±Ú¸sºÉ¿³½L¾ÚµÛ¯t¥Ø¥ú§ô  ¹¡­¹  ¨Ã±C®P°_»R¬P¤l­Ì³º©]¦u­Ô  §A¤£³W«ßªº©I§l©l²×ÅåÂZµÛ¥¢¯vªºªÅ®ð  Ãe¤jªº«äºü«æ¦æ¦p®É¶¡¥^¥^  ²¤Åã§x¹yªº®eÃC¸Ì  ¯µÂäF¤@¤Á¤j¤Æ½ü°j¤§¤º¤£©úªº·N¶H  ¤é´_µ¥«Ý­·¥Í¤ô°_ªº¦]½t  ­|­|Â\´ç¦Ó¨Ó

Ãö©ó¨º¨ÇµL·N±µªñ  «o¤£´¿»·Â÷ªº­ì©l¼¤©À  ¤a¦Û»lÁY©ó¤[¸g¹Ð«Êªº¤@¶¨  ÀZµM¥Bº¡ÂÐ·É®á  ¦h¦~¤§«e¥L­Ì«K¤w±ó¦u  §Aªº¤ß¬OÅæ®È¨u¦ÜªºÃä«°  ­×¦æ¹¬»P­ß·QªÌªº¨µ¦æ  ¤é©]¤£ºÉ  ¨g¯Xªº¹Ú  ºzµM§ÀÀHµÛ¸¨¸­  ³ã³ã¤£¥ð¦a  ÃG¹L°_­·ªº©]µó  ¦V«°­¥¼s×Àªº¯î­ì½­¸»·±°

°@¤ß²fÁå¾®»E¤äÂ÷ªº¶ø¸q  §Aªº¤@©Ù²L¯º  §t»W  Áô¬ùªx°_¤Ö¦~®É¥N¿ò¸¨ªº©ù´­­·ªö  ¨H±I¦h®Éªº±¡ºü  «é­Y¼é®ö¯ëºø±K¨Óŧ  ¿ð¨Óªº¦¬Ã¬²½«á  §A§Y±N¦A«×±Òµ{»·¦æ  Áï§O²`©~ªº¯ðµ¡  Ä~Äò¥t¤@³B¤sªLªºÁÙµê¤JÀR  ¦Ó³o¤§«e²³¦hªº­×²ß   ¬é¬O§Ç¦±

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¦³¾÷¥ú¹q¤¸¥ó»PÅã¥Ü§Þ³N¹êÅç«Ç---§d©¾¼m±Ð±Â

§d©¾¼m±Ð±Â¬ã¨s»â°ì¡G¦³¾÷µo¥ú¤¸¥ó¡BÅã¥Ü»P·Ó©ú§Þ³N¡B¦³¾÷¥ú¹q¥b¾ÉÅé»P¤¸¥ó

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¥»¹êÅç«Çªñ¦~¨Ó¥D­n­P¤O©ó·s¿³¤§¦³¾÷¥ú¹q¥b¾ÉÅé¡B¤¸¥ó¡BÅã¥Ü¡B·Ó©ú§Þ³Nµ¥¬ÛÃö¤§¬ã¨s¡A¬ã¨s¤è¦V¥]¬A²`¤JÁA¸Ñ¦³¾÷¥ú¹q¥b¾ÉÅé¤Î¤¸¥ó¤§°ò¦ª«²z¡A¥H¤Î¬ã¨s³Ð·sªº§Þ³N»PÀ³¥Î¤è¦V¡A¥]¬A: (1)Åã¥Ü¡B·Ó©ú§Þ³N¤§¬ã¨s¡G­P¤O©ó°ª®Ä²v¡B°ªµe½è¤§¦³¾÷µo¥ú¤¸¥ó»PÅã¥Ü¡B·Ó©ú§Þ³N¡AÁ¡½¤¹q´¹Åé¡A¥H¤Î¤¸¥ó/Åã¥Ü¥ú¾Çµ¥¤§¬ã¨s; (2)¦³¾÷¥ú¹q¥b¾ÉÅ餸¥ó¤§¬ã¨s¡G­P¤O©ó¦³¾÷¥b¾ÉÅé»P¥ú¹q¤¸¥ó¤§ª«²z»P§Þ³N¡A¥]¬Aµo¥ú/¹p®g¤¸¥ó¡AÁ¡½¤¹q´¹Åé¡A·P¥ú¤¸¥ó/¤Ó¶§¯à¹q¦À¡A¤Æ¾Ç·P´ú¤¸¥óµ¥; (3)¦³¾÷¥ú¹q¥b¾ÉÅé»P§÷®Æ¤§°ò¦ª«²z¤§¬ã¨s:¥]¬A¦³¾÷¥b¾ÉÅ餤¤§¸ü¤l¶Ç¿é¡B¹q²üÂಾ»P¥úª«²z/¥ú¾Ç¯S©Ê»P¾÷¨î¡A®É¶¡¸ÑªR¥úÃгN¡A¦³¾÷¥b¾ÉÅ餧ª«¬Û/¬ÛÅÜ(¦p«D´¹¡B²G´¹¡Bµ¥¦V©Ê¡B«Dµ¥¦V©Ê¡B¤À¤l±Æ¦C)¡B§ÎºA¡A¤À¤l§ÎºA¥H¤Î¤À¤lµ²ºc»Pª«©Ê¡B¥ú¹q¯S©ÊÃö«Yµ¥¤§¬ã¨s¡C

¥»¹êÅç«Çªñ¤­¦~¤º¦b³o¨Ç¬ÛÃö¬ã¨s»â°ìµoªí¤F±Nªñ50½g°ªimpact factor¤§SCI´Á¥Z½×¤å¡C¦h¶µ¬ã¨s¦¨ªG¹ï¦³¾÷¥ú¹q¥b¾ÉÅé¤Î¤¸¥ó¤§®Ä¯à¤§´£ª@¨ã¦³¬ö¿ý©Ê¤§®Ä¯q¡A¤@¨ÇSCI½×¤å´¿¥ZµnApplied Physics Letters´Á¥Z«Ê­±¤Î¦h¦¸¬°°ê»Ú¬ì§ÞÂø»x(SPIE OE Magazine; Laser Focus World; Photonics Spectra; Heart Cutµ¥)±MÃD·s»D³ø¾É¡C¥H¤U¶i¤@¨B»¡©úªñ´X¦~¨Ó¤§¬ã¨s¥DÃD¡B¦¨ªG¤Î®i±æ¡C

¤G¡Bªñ¦~¬ã¨s¥DÃD»P¦¨ªG

I. OLEDÅã¥Ü/·Ó©ú¤¸¥ó¡B§Þ³N»P¥ú¾Ç

³o¤@³¡¥÷ªº¤u§@¥D­n¬O­P¤O©óÅã¥Ü¡B·Ó©ú§Þ³N¬ÛÃö¤§°ª®Ä²v¡B°ªµe½è¤§¦³¾÷µo¥ú¤¸¥ó¡A¤¸¥ó/Åã¥Ü¥ú¾Ç¤§¬ã¨s¡A¥H¤Î¾ã¦X¤§§Þ³Nµ¥; ¾ú¦~¨Ó¤§¬ÛÃö¬ã¨s¥DÃD»P¦¨ªG¥D­n¥]¬A:

(1)   ¦³¾÷µo¥úµ²ºc¤Î¤¸¥ó¤§ÄYÂÔ¹qºÏ¥ú¾Ç¼Ò«¬»P¼ÒÀÀ(Electromagnetic modeling)

(2)   §C¤Ï®g°ª¹ï¤ñ¤§¥ý¶i¤Wµo¥ú«¬¥D°Ê¦¡¦³¾÷¹q¿Eµo¥úÅã¥Ü¾¹§Þ³N (High-contrast top-emitting AMOLEDs)

(3)   ·L¦@®¶µÄ¦³¾÷µo¥ú¤¸¥ó (Microcavity OLEDs)

(4)   ¤Wµo¥ú«¬¦³¾÷µo¥ú¤¸¥ó (Top-emitting OLEDs)

(5)   ­Ë¸m«¬(¤W)µo¥ú«¬¦³¾÷µo¥ú¤¸¥ó (Inverted top-emitting OLEDs)

(6)   °ïÅ|¦ê±µ¦¡°ª®Ä¯à¦³¾÷µo¥ú¤¸¥ó (Tandem OLED)

(7)   ·L¦@®¶µÄ°ïÅ|¦ê±µ¦¡°ª®Ä¯à¦³¾÷µo¥ú¤¸¥ó(Microcavity tandem OLEDs)

(8)   ²Ä¤G¤Ï¸`ÂI¦¡OLED¤¸¥ó(Second-antinode OLED)

(9)   ¦U¦¡°ª®Ä²vÁC¥ú§÷®Æ»P¤¸¥ó(Phospohrescent OLEDs)

(10) ¥Õ¥ú¦³¾÷µo¥ú¤¸¥ó(White-emitting OLEDs)

(11) °ª®Ä¯à(µL»ÝºUÂø)¤§¦³¾÷µµ¥~¥úµo¥ú¤¸¥ó(UV OLEDs)

(12) µL»ÝºUÂø¤§°ª®Ä²v¦³¾÷²`ÂÅ¥ú¤¸¥ó(Non-doped deep blue OLEDs)

(13) °ª«G«×¤§¦³¾÷ÂÅ¥ú¤¸¥ó(High-brightness blue OLEDs)

(14) Âù¦â¤Î¥þ±m¥iµ{¦¡¤Æ¤§¦³¾÷µo¥ú¤¸¥ó(Programmable OLEDs)

(15) ¼Ò½k±µ­±¤§¦³¾÷µo¥ú¤¸¥ó(Fuzzy-junction OLEDs)

(16) ¥Î©óÄeÂø¤Î¥þ±m¹Ï®×¤Æ¤§¦³­­ºUÂø·½¤§ÂX´²¼öÂà¦L§Þ³N (FS-D2T2, Finite-source dye-diffusion thermal transfer for

        doping and color integration)

(17) º¥¼hÄeÂø¤§¦³¾÷µo¥ú¤¸¥ó (graded-doping OLED)

(18) ·»ÀÙ»]®ð»²§U¤§ÂX´²¼öÂà¦L§Þ³N (Solvent-assisted dye-diffusion thermal transfer)

¡@

Fig. 1 ©Òµo®i¤§¦UºØ¥ú¦â¤§OLED

Fig. 2 ©Òµo®i¤§Programmable OLED¥ý«á¬°Applied Physics Letters¥Zµn´Á¥Z«Ê­±,

Laser Focus World¤Î SPIE OE Magazine ±MÃD³ø¾É

Fig. 3. Photonics Spectra ±MÃD³ø¾É©Òµo®i¤§High-contrast top-emitting AMOLEDÅã¥Ü§Þ³N
Fig. 4. Photonics Spectra ±MÃD³ø¾É©Òµo®i¤§OLED¹qºÏ¥ú¾Ç¼ÒÀÀ,

°ª¥ú¾Ç®Ä²vSecond-antinode OLED¤Î200-cd/A Microcavity Tandem OLED§Þ³N

II. ¦³¾÷¥b¾ÉÅé¸ü¤l¶Ç¿é¯S©Ê¬ã¨s

³o¤@³¡¥÷ªº¤u§@¥D­n¬O­P¤O©ó¦³¾÷¥b¾ÉÅé¸ü¤l¶Ç¿é¯S©Ê»P°ò¦ª«²z°ò¨î¤§±´°Q; ¾ú¦~¨Ó¤§¬ÛÃö¬ã¨s¥DÃD»P¦¨ªG¥D­n¥]¬A:

(1)   ­¸¦æ®É¶¡¦¡¸ü¤lº}²¾³t«×»P¶Ç¿é²v¶q´ú§Þ³N(Time-of-flight mobility measurement techniques)

(2)   ¹q¤l»PÂù·¥(Bipolar)¶Ç¿é§÷®Æ»P¾÷¨î

(3)   ¹q²ü¶Ç¿é¯S©Ê»P¤À¤lµ²ºc¤§Ãö«Y

(4)   ¹q²ü¶Ç¿é¯S©Ê»P¤À¤l¹q¤lµ²ºc¤§Ãö«Y

(5)   ¥H¶q¤l²z½×­pºâ¤èªk±´°Q¤À¤l¶¡¹q¤l¶Ç»¼

(6)   ¹q²ü¶Ç¿é¯S©Ê»P¤À¤lÁ¡½¤§ÎºA(thin-film morphology)¥H¤Î¤À¤l²Õ¸Ë(molecular assembly)¤§Ãö«Y

(7)   ²VÄe°ª¤À¤l¨t²Î¤§¹q²ü¶Ç¿é¯S©Ê¬ã¨s--¦³¾÷¥ú¾ÉÅé(organic photoconductor, OPC)¬ã¨s

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Fig. 5 Quantum calculation of molecular electronic structures and properties.
Fig. 6.  ACS Heart Cut Weekly ±MÃD³ø¾É©Òµo®i¤§·s«¬¦³¾÷¥b¾ÉÅé

III. ¦³¾÷¥b¾ÉÅé¥ú¾Ç¤Î¥úª«²z¯S©Ê¬ã¨s

³o¤@³¡¥÷ªº¤u§@¥D­n¬O¥H¦U¦¡¥úÃгN¤Î®É¶¡¸ÑªR¥úÃгN, ±´°Q¦³¾÷¥b¾ÉÅé¥ú¾Ç¯S©Ê»P¥úª«²z¾÷¨î; ¾ú¦~¨Ó¤§¬ÛÃö¬ã¨s¥DÃD»P¦¨ªG¥D­n¥]¬A:

(1)   ¥ú­Pµo¥ú¤Î¿Eµo¥úÃгN(photoluminescence and photoluminescence excitation spectroscopy)

(2)   ®É¶¡¸ÑªR¥úÃгN(Time-resolved spectroscopy)

(3)   ¥H¶q¤l²z½×­pºâ¤èªk±´°Q¦³¾÷¥b¾ÉÅ餧¿EµoºA»P¥úª«²z©Ê½è

(4)   °¾·¥¤Æ¥úÃгN(polarized spectroscopy)

(5)   ¥ú¾É®ÄÀ³¥úÃгN(Photoresponse spectroscopy)

(6)   ¦³¾÷¥ú¹q¥b¾ÉÅ餤¤§«Dµ¥¦V¥ú¾Ç¯S©Ê(optical anisotropy)»PÀ³¥Î

(7)   ¦³¾÷¥ú¹q¥b¾ÉÅ餧»¤µo©Ê¿ç®g(stimulated emission)¤ÎµÔªø½ÕÅܧ޳N

(8)   ¦³¾÷¥ú¹q§÷®Æ¤§®É¶¡¸ÑªR¥úÃФΥúª«²z¯S©Ê¬ã¨s: ¦b¹L¥hªº´X¦~¤¤, §Ú­Ì«Øºc¤F¤@®M®É¶¡¸ÑªR¥úÃжq´ú¨t²Î,¨ã¦³¬Û

        ·í¤jªº®É¶¡°ÊºA½d³ò, ¨ã¦³°ª«×¼u©Ê¥H¶i¦æ¦³¾÷¥ú¹q¤Î¥b¾ÉÅé§÷®Æ¤Î¤¸¥ó¤§¸ü¤l¤Î¦UºØ¿EµoºA¤§°Ê¤O¾Ç¤Î°ÊºA¯S©Ê

        ±´°Q, ¥HÀò­P¹ï¦UºØ¾÷¨î¤Î¯S©Ê§ó²`¤J¤§¤F¸Ñ; §Q¥Î¦¹¤@§Þ³N, §Ú­Ì±´°Q¦h¤è­±ªº½ÒÃD,¨Ò¦p: (1) ±´°Q¦UºØ¦³¾÷¥b¾ÉÅé

        ¤§¿Ã¥ú¥úÃФΥͩR¶g´Á(lifetime), ÁC¥ú¥DÅé§÷®Æ¤ÎÄeÂø§÷®Æ¤§ÁC¥ú¥úÃФΥͩR¶g´Á(lifetime)µ¥, ®ø¥ú¾÷¨îµ¥,¹ï©ó¤¸¥ó

        ¤§¬ã¨s»P³]­p´£¨Ñ²ö¤j§U¯q; (2) ±´°Q¦³¾÷·P¥ú§÷®Æ¤Î¤¸¥ó¤ºcharge-transfer state¤§¥Í©R¶g´Á»P°ÊºA¦æ¬°, ¼W¶i¹ï©ó¦³

        ¾÷·P¥ú§÷®Æ¤Î¤¸¥ó¾÷¨î¤§¤F¸Ñ; (3) ±´°Q·L¦@®¶µÄ¦³¾÷µo¥úµ²ºc(microcavity organic light-emitting structure)¤º¤§·L¦@

        ®¶µÄ¹q°Ê¤O¾Ç»Pª«²z (microcavity electrodynamics)¥H¤Î¥úª«²z, ¥H¤F¸Ñ·L¦@®¶µÄ¹ï©óµÄ¤º¦³¾÷µo¥úÅé¦UºØ¥úª«²z¾÷

        ¨î¤§®ÄÀ³, ¨Ã¥i»P§Ú­Ì¥ú¾Ç¼ÒÀÀ­pºâµ²ªG§@¥æ¤¬ÅçÃÒ;

Fig. 7 Molecular reorientation in organic semiconductors and applications for tunable stimulated emission.

IV. ¦³¾÷¥b¾ÉÅ餧ª«¬Û»P·LÆ[§ÎºA¾Þ±±

³o¤@³¡¥÷ªº¤u§@¥D­n¬O¥H¦U¦¡¥úÃгN¤ÎÅã·L³N, ±´°Q¦³¾÷¥b¾ÉÅé¦UºØ·LÆ[ª«¬Û,§ÎºA, ¥H¤Î·LÆ[ª«¬Û»P§ÎºA¤§¾Þ±±»P¬ÛÅܤÆ, ¥]¬A:

(1)   ±´°Q¦³¾÷¥b¾ÉÅé¦UºØ·LÆ[ª«¬Û,§ÎºA, ¥H¤Î·LÆ[ª«¬Û»P§ÎºA¤§¾Þ±±»P¬ÛÅܤÆ,¥]¬A´¹ÅéºA(crystal), «D´¹ºA(amorphous

        glass), ¦U¦¡²G´¹ºA(liquid crystal), ²G´¹¬Á¼þºA(liquid crystal glass), µ¥¦V»P«Dµ¥¦V§ÎºA(isotropic and anisotropic

        condensed phases), ¤À¤l©`¦Ì»E¶°ºA(nano-aggregates);

(2)   ¬ã¨s¦³¾÷¥b¾ÉÅé¦b¦UºØ·LÆ[ª«¬Û»P§ÎºA¤U¤§¥ú,¹q,ª«²z¯S©Ê»PÀ³¥Î;

(3)   ¬ã¨s¦³§Ç¤§¦³¾÷¥b¾ÉÅé¤À¤l¦Û²Õ¸Ë(molecular self-assembly), ¥H´£ª@¦³¾÷¥b¾ÉÅé»P¤¸¥ó¤§¦UºØ¥ú¹q®Ä¯à;

Fig. 8 In-situ observation of guided molecular assembly.

V. ¦³¾÷¥b¾ÉÅé·P´ú¤¸¥ó

³o¤@³¡¥÷ªº¤u§@¥D­n¬O±´°Q¦³¾÷¥b¾ÉÅ餧¥ú,¹q,ª«²z©Ê½è¹ï¥ú¯à»P¤£¦P¤Æ¾Çª«½è¤§·PÀ³, ¨ÃÀ³¥Î©ó·P´ú¤¸¥ó¤§¬ã»s; ¾ú¦~¨Ó¤§¬ÛÃö¬ã¨s¥DÃD»P¦¨ªG¥D­n¥]¬A:

(1)   °ª®Ä²v¤§¦³¾÷¥úÀË´ú¤¸¥ó: §Q¥Î¦U¦¡¥úÃгN¤Î®É¶¡¸ÑªR¥úÃгN, ¬ã¨s¦³¾÷¤À¤l¶¡¤§°ª®Ä²v¬IÅé-¨üÅé¹q¤lÂಾ²{¶H

        (donor-acceptor electron transfer)¤Î¥úª«²z; ¾Ú¥Hµo®i¥X°ª®Ä²v¤§¦³¾÷µµ¥~¥ú¥úÀË´ú¤¸¥ó(organic UV-A photodetector)

        ¡A¶q¤l®Ä²v±µªñ80% (»PGaN¤¸¥ó¬Û·í), ÅTÀ³µÔªø²[»\§¹¾ã¤§UV-A½d³ò, ¨ã¦³§@¥ÍÂå,Àô«O¤Î¬ì¾ÇÀË´ú¥Î³~¤§¼ç¤O;

(2)   ¦³¾÷¥b¾ÉÅé¤Æ¾Ç·P´ú: ³\¦h¦³¾÷¥b¾ÉÅ餧¥ú,¹q,ª«²z©Ê½è¨üÀô¹Òª^³ò¼vÅT¡A§Q¥Î¦³¾÷ªº»¤µo©Ê¿ç®g¯S©Ê¥H¤Î¥~¦b¤Æ¾Ç

        ª«½èªº¼vÅT¡A¬ã»s°ª¤Æ¾Ç·PÀ³¾¹ÆF±Ó¤§¥ú¹q¦¡¤Æ¾Ç·P´ú¤¸¥ó, ¥iÀ³¥Î¦bÀô¹Ò»P¥Í¤Æ·P´úÀ³¥Î¤W¡C

Fig. 9 Prolonged donor-acceptor charge-transfer states and applications

 in highly efficient organic visible-blind UV photodetectors.

VI. ·s¿³¤§Á¡½¤¹q´¹Åé§Þ³N

¦b³o¨Ç¬ã¨s¤u§@¤¤, ¥D­n¬ã¨s·s¿³¤§Á¡½¤¹q´¹Å餸¥ó»P§Þ³N, ¨Ò¦p¥]¬A:

(1)   (¦³¾÷)µo¥úÁ¡½¤¹q´¹Åé: ¥H°ª®Ä²v¤ÎÂù¸ü¤l¶Ç¿é¤§¦³¾÷¥b¾ÉÅé, µo®i°ª®Ä²v¤§ (¦³¾÷)µo¥úÁ¡½¤¹q´¹Åé;

(2)   ³z©úÁ¡½¤¹q´¹Å餸¥ó: §Q¥Î°ª¯à»Ø¥b¾ÉÅéZnO¤Î¬ÛÃö®ñ¤Æª«¥b®qÅéµo®i¥þ³z©úÁ¡½¤¹q´¹Å餸¥ó, ¥i¥Î©ó¼W¶iÅã¥Ü¾¹¶}

        ¤f²v, ¬ï³z²v¤Î®Ä¯àµ¥.

Fig. 10 ©Òµo®i¤§³z©ú¹q´¹Åé¤Îµo¥ú¹q´¹Åé

¤T¡B®i±æ

¥»¹êÅç«Ç¥Ø«e¥H¤Î¥¼¨Ó´X¦~¤º¶i¦æ¤§¬ã¨s­pµe»P¬ã¨s¤è¦V¥D­n¥]¬A:

(1)   ¼v¹³Åã¥Ü¸ó»â°ì­pµe--°ª©Ê¯à¥D°Ê¯x°}¦¡¦³¾÷¹q¿Eµo¥úÅã¥Ü§Þ³N¬ã¨s

       ¥»­pµe¥D­n¬O°w¹ïµo®i°ª©Ê¯à¥D°Ê¯x°}¦³¾÷¹q¿Eµo¥úÅã¥Ü¾¹¡]Active-matrix OLED displays, AMOLED¡^¡]°ª®Ä²v¡B

       °ª¹ï¤ñ¡B¦â±m¹¡©M¡B°ª¥i¾a«×¡^©Ò»Ý¤§ÃöÁä§÷®Æ¡B¤¸¥ó¡B»P¾ã¦X§Þ³Nµ¥¡A¶i¦æ²`¤J¬ã¨s¡C

(2)   ¯à·½Àô¹Ò¸ó»â°ì­pµe--°ª®Ä¯à¦³¾÷µo¥ú·Ó©ú§Þ³N¬ã¨s

       ¦b¦¹­pµe¤¤¥D­n±N°w¹ïµo®i°ª©Ê¯àOLED·Ó©úªºÃöÁä§Þ³N½ÒÃD¡A»P¥ú¹q©Òªº´X¦ì¦Ñ®v¦@¦P¦X§@,¶i¦æ±q§÷®Æ¡B¤¸¥ó¨ì

       ¾ã¦X§Þ³N¤§§¹¾ã»P¨t²Î©Ê¬ã¨s¡C¬ã¨s¼Ðªº¥]¬A:°ª®Ä²v¡B°ª©Ê¯àÁC¥úOLED¤¸¥óÃöÁä§÷®Æ;°ª©Ê¯àOLED·Ó©ú¤¸¥ó¤Î¤¸

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