{"id":31710,"date":"2020-02-26T18:16:11","date_gmt":"2020-02-26T18:16:11","guid":{"rendered":"https:\/\/silvaco.com\/%eb%b6%84%eb%a5%98%eb%90%98%ec%a7%80-%ec%95%8a%ec%9d%8c\/organic-device-technology\/"},"modified":"2020-02-26T18:16:11","modified_gmt":"2020-02-26T18:16:11","slug":"organic-device-technology","status":"publish","type":"post","link":"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/organic-device-technology\/","title":{"rendered":"Organic Device Technology"},"content":{"rendered":"<div id='template_overview'  class='avia-section main_color avia-section-small avia-no-border-styling  avia-bg-style-scroll  avia-builder-el-0  el_before_av_section  avia-builder-el-first   container_wrap fullsize' style='background-color: #ffffff;  margin-top:0px; margin-bottom:0px; '  ><div class='container' ><main  role=\"main\" itemprop=\"mainContentOfPage\"  class='template-page content  av-content-full alpha units'><div class='post-entry post-entry-type-page post-entry-31710'><div class='entry-content-wrapper clearfix'>\n<div class='flex_column_table av-equal-height-column-flextable -flextable' style='margin-top:20px; margin-bottom:0px; '><div class=\"flex_column av_three_fourth  flex_column_table_cell av-equal-height-column av-align-top first  avia-builder-el-1  el_before_av_one_fourth  avia-builder-el-first  \" style='padding:0px 0px 0px 0px ; border-radius:0px; '><section class=\"av_textblock_section \"  itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/BlogPosting\" itemprop=\"blogPost\" ><div class='avia_textblock  '   itemprop=\"text\" ><h1>Organic Device Technology<\/h1>\n<p>The full text for most of these papers may be found at the IEEE website at\u00a0<a href=\"http:\/\/www.ieee.org\/\" target=\"_blank\" rel=\"noopener noreferrer\">www.ieee.org<\/a>.<\/p>\n<p>Debin Li,<br \/>\n&#8220;Recent Progress in Organic Device Simulation using Silvaco&#8221;<br \/>\nSilvaco Japan, pp.7, Organic Electroluminescence, November 2014<\/p>\n<p>T. K. Maiti<sup>1<\/sup>, T. Hayashi<sup>2<\/sup>, L. Chen<sup>1<\/sup>, M. Miura-Mattausch<sup>1,2<\/sup>, and H. J. Mattausch<sup>1,2<\/sup><br \/>\n&#8220;Organic Thin-Film Transistor Compact Model with Accurate Charge Carrier Mobility&#8221;<\/p>\n<ol>\n<li>HiSIM Research Center, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima city,<br \/>\nP.C. 7398530, Japan<\/li>\n<li>Graduate School of Advanced Sciences of Matter, Hiroshima University, Higashi-Hiroshima city,<br \/>\nP.C. 7398530, Japan<\/li>\n<\/ol>\n<p>International Conference on Simulation of Semiconductor Processes and Devices (SISPAD) 2014, pp.133-136<\/p>\n<p>Jing-Wen Han, Lei Sun*, Yu-Qian Xia, Hao Xu, Yi-Bo Zhang, Sheng-Dong Zhang and Yi Wang,<br \/>\n&#8220;Impact of Gate Coupling and Misalignment on Performance of Double-gate Organic Thin Film Transistors&#8221;<br \/>\nInstitute of Microelectronics, Peking University, Beijing 100871, P. R. China<\/p>\n<p>International Conference on Solid State Devices and Materials (SSDM) 2014, pp.248-249<\/p>\n<p><span class=\"regular\">Copyright 2014 The Japan Society of Applied Physics<\/span><\/p>\n<p>Kimura M., Suzuki D., Koike M., Sawamura S., Kato M.,<br \/>\n&#8220;Pulsewidth Modulation With Current Uniformization for AM-OLEDs&#8221;<br \/>\nIEEE Transactions on Electron Devices, Vol. 57, Issue 10, October 2010, pp. 2624 &#8211; 2630<\/p>\n<p>Arun Tej Mallajosyula, Naveen Srivastava, S. Sundar Kumar Iyer, Baquer Mazhari,<br \/>\n&#8220;Characterization of matrix and isolated organic solar cells&#8221;,<br \/>\nSolar Energy Materials and Solar Cells, Vol. 94, Issue 8, August 2010, pp. 1319-1323.<\/p>\n<p>Carlo de Falco, Riccardo Sacco, Maurizio Verri,<br \/>\n&#8220;Analytical and numerical study of photocurrent transients in organic polymer solar cells&#8221;,<br \/>\nComputer Methods in Applied Mechanics and Engineering, Vol. 199, Issues 25-28, 15 May 2010, pp. 1722-1732.<\/p>\n<p>Dipti Gupta, Yongtaek Hong,<br \/>\n&#8220;Understanding the effect of semiconductor thickness on device characteristics in organic thin film transistors by way of two-dimensional simulations&#8221;,<br \/>\nOrganic Electronics, Vol. 11, Issue 1, January 2010, pp. 127-136.<\/p>\n<p>C. J. Nassar, J. F. Revelli, C. A. K. Williams, R. J. Bowman,<br \/>\n&#8220;Fringing Field Effects in Thin-Film Silicon Transistors on Glass&#8221;,<br \/>\nJournal of Display Technology, Vol. 6 , Issue: 8, 2010, pp. 312 &#8211; 317.<\/p>\n<p>M. Nurul Islam, B. Mazhari,<br \/>\n&#8220;Comparative analysis of unity gain frequency of top and bottom-contact organic thin film transistors&#8221;,<br \/>\nSolid-State Electronics, Vol. 53, Issue 10, October 2009, pp. 1067-1075.<\/p>\n<p>C. Ucurum, H. Siemund and H. G\u00f6bel,<br \/>\n&#8220;Impact of electrical measurement parameters on the hysteresis behavior of pentacene-based organic thin-film transistors&#8221;,<br \/>\nOrganic Electronics Vol. 11, Issue 9, September 2010, pp. 1523-1528.<\/p>\n<p>Dipti Gupta, M. Katiyar, Deepak Gupta,<br \/>\n&#8220;An analysis of the difference in behavior of top and bottom contact organic thin film transistors using device simulation&#8221;,<br \/>\nOrganic Electronics, Vol. 10, Issue 5, August 2009, pp. 775-784.<\/p>\n<p>W. Wondmagegn, R. Pieper,<br \/>\n&#8220;Simulation of top-contact pentacene thin film transistor&#8221;,<br \/>\nJournal of Computational Electronics, Vol. 8, No. 1, 2009, pp. 19-24.<\/p>\n<p>Dipti Gupta, Namho Jeon, Seunghyup Yoo,<br \/>\n&#8220;Modeling the electrical characteristics of TIPS-pentacene thin-film transistors: Effect of contact barrier, field-dependent mobility, and traps&#8221;,<br \/>\nOrganic Electronics, Vol. 9, Issue 6, December 2008, pp. 1026-1031.<\/p>\n<p>I. Mejia, M. Estrada, M. Avila,<br \/>\n&#8220;Improved upper contacts PMMA on P3HT PTFTS using photolithographic processes&#8221;,<br \/>\nMicroelectronics Reliability, Vol. 48, Issues 11-12, November-December 2008, pp. 1795-1799.<\/p>\n<p>Sarah Schols, Paul Heremans<br \/>\n&#8220;Two-dimensional ATLAS Device Simulation of an Organic Ambipolar Lightemitting Field-Effect Transistor&#8221;<\/p>\n<p>C.H. Cheung, A.M.C. Ng, A.B. Djuri\u0161i\u0107, Z.T. Liu, C.Y. Kwong, P.C. Chui, H.L. Tam, K.W. Cheah, W.K. Chan, J. Chan, A.W. Lu, A.D. Raki\u0107<br \/>\n&#8220;Angular dependence of the emission from low Q-factor organic microcavity light emitting diodes&#8221;,<br \/>\nDisplays, Vol. 29, Issue 4, October 2008, pp. 358-364.<\/p>\n<p>Moon Hyo Kang, Ji Ho Hur, Youn Duck Nam, Eun Ho Lee, Se Hwan Kim, Jin Jang,<br \/>\n&#8220;An optical feedback compensation circuit with a-Si:H thin-film transistors for active matrix organic light emitting diodes&#8221;,<br \/>\nJournal of Non-Crystalline Solids, Vol. 354, Issues 19-25, 1 May 2008, pp. 2523-2528.<\/p>\n<p>Alan Man-Ching Ng, Aleksandra B. Djurisic, Kai-Hang Tam, Kai Wing Cheng, Wai-Kin Chan, Hoi Lam Tam, Kok-Wai Cheah, Albert W. Lu, Jesse Chan, Aleksandar D. Rakic,<br \/>\n&#8220;3,4,9,10-Perylenetetracarboxylicdiimide as an interlayer for ultraviolet organic light emitting diodes&#8221;,<br \/>\nOptics Communications, Vol. 281, Issue 9, 1 May 2008, pp. 2498-2503.<\/p>\n<p>M. Estrada, I. Mej\u00eda, A. Cerdeira, J. Pallares, L.F. Marsal and B. I\u00f1iguez,<br \/>\n&#8220;Mobility model for compact device modeling of OTFTs made with different materials&#8221;,<br \/>\nSolid-State Electronics, Vol 52, Issue 5, May 2008, pp. 787-794.<\/p>\n<p>S. Mijalkovic, D. Green, A. Nejim, G. Whiting,<br \/>\n&#8220;Modelling of organic field-effect transistors for technology and circuit design&#8221;,<br \/>\n26th International Conference on Microelectronics, 2008, 11-14 May 2008 pp. 469 &#8211; 476<\/p>\n<p>Sarah Schols,* Stijn Verlaak, C\u00e9dric Rolin, David Cheyns, Jan Genoe, and Paul Heremans,<br \/>\n&#8220;An Organic Light-Emitting Diode with Field-Effect Electron Transport&#8221;<\/p>\n<p>Sarah Schols, Stijn De Vusser and Paul Heremans IMEC,<br \/>\n&#8220;Two-Dimensional ATLAS Device Simulation of an Organic Light-Emitting Field-Effect Transistor Using a Heterostructure Inside the Transistor Channel&#8221;,<br \/>\nKapeldreef 75,B3001 Leuven,Belgium<\/p>\n<p>Hsiao-Wen Zan, Kuang-Ming Wang, Kuo-Hsi Yen,<br \/>\n&#8220;Electric field simulation of the TBC-OTFTs with meshed source electrodes&#8221;,<br \/>\nIDMC 2007 &#8211; International Display Manufacturing Conference and FPD Expo &#8211; Proceedings, 2007, pp. 505-508<\/p>\n<p>Gernot Paasch,<br \/>\n&#8220;Transport and reactions in doped conjugated polymers: Electrochemical processes and organic devices&#8221;,<br \/>\nJournal of Electroanalytical Chemistry, Vol. 600, Issue 1, 1 February 2007, pp. 131-141<\/p>\n<p>B. Ilic, D. Czaplewski, M. Zalalutdinov, B. Schmidt, H. G. Craighead,<br \/>\n&#8220;Fabrication of flexible polymer tubes for micro and nanofluidic applications&#8221;<br \/>\nJournal of Vacuum Science &amp; Technology B: Microelectronics and Nanometer Structures, Vol. 20, issue 6, pp. 2459.<\/p>\n<p>Stijn De Vusser, Sarah Schols, Soeren Steudel, Stijn Verlaak, Jan Genoe, Wibren D. Oosterbaan, Laurence Lutsen, Dirk Vanderzande, and Paul Heremans,<br \/>\n&#8220;Light-emitting organic field-effect transistor using an organic heterostructure within the transistor channel&#8221;<\/p>\n<p>Santosh Pandeya, Akwete Bortei-Dokub and Marvin H. White,<br \/>\n&#8220;Simulation of biological ion channels with technology computer-aided design&#8221;<br \/>\n16 November 2006 Computer Methods and Programs in Biomedicine 85 (1), pp. 1-7<\/p>\n<p>I. Kamohara (Silvaco Japan), M. Townsend, B. Cottle,<br \/>\n&#8220;Simulation of heterojunction organic thin film devices and exciton diffusion analysis in stacked-hetero device&#8221;<br \/>\nJournal of Applied Physics, Vol. 97, No. 1, Jan 2005, pp. 014501-1-014501-9<\/p>\n<p>S. Cherian, C. Donley, D. Mathine, L. LaRussa, W. Xia, N. Armstrong,<br \/>\n&#8220;Effects of field dependent mobility and contact barriers on liquid crystalline phthalocyanine organic transistors&#8221;<br \/>\nJournal of Applied Physics, Vol. 96, Issue 10, November 2004, pp. 5638-5643<\/p>\n<p>T. Lindner, G. Paasch, S. Scheinert,<br \/>\n&#8220;Influence of distributed trap states on the characteristics of top and bottom contact organic field-effect transistors&#8221;<br \/>\nJournal of Materials Research, Vol. 19, Issue 7, July 2004, pp. 2014-2027<\/p>\n<p>S. Scheinert and G. Paasch,<br \/>\n&#8220;Fabrication and analysis of polymer field-effect transistors&#8221;<br \/>\nPhysica Status Solidi (A) Applied Research, Vol. 201, Issue 6, May 2004, pp. 1263-1301<\/p>\n<p>G. Paasch,<br \/>\n&#8220;Transport in doped conjugated polymers with polarons and bipolarons forming complexes with counter ions&#8221;<br \/>\nSolid State Ionics, Vol. 169, Issue 1-4 SPEC. ISS., April 2004, pp. 87-94.<\/p>\n<p>S. Scheinert, G. Paasch, T. Doll,<br \/>\n&#8220;The influence of bulk traps on the subthreshold characteristics of an organic field effect transistor&#8221;<br \/>\nSynthetic Metals, Vol. 139, Issue 2, September 2003, pp. 233-237.<\/p>\n<p>D. Prentice and K. P. Roenker,<br \/>\n&#8220;Numeric Modelling Study of Organic Pentacene-Based MOSFETs&#8221;<br \/>\nProceedings of 2003 International Semiconductor Device Research Symposium, Washington DC, pp. 212-213.<\/p>\n<p>G. Paasch, A. Nesterov, S. Scheinert,<br \/>\n&#8220;Simulation of organic light emitting diodes: influence of charges localized near the electrodes&#8221;<br \/>\nSynthetic Metals, Vol. 139, Issue 2, September 2003, pp. 425-432.<\/p>\n<p>S. Scheinert, W. Schliefke,<br \/>\n&#8220;Analyzes of field effect devices based on poly(3-octylthiophene)&#8221;<br \/>\nSynthetic Metals, Vol. 139, Issue 2, September 2003, pp. 501-509<\/p>\n<p>T. Vamsi Krishna, J. R. Jessing, D. D. Russell, J. Scaggs, L. R. Warner, J. A. Hartman,<br \/>\n&#8220;Modeling and design of polythiophene gate electrode ChemFETs for environmental pollutant sensing&#8221;<br \/>\nBiennial University\/Government\/Industry Microelectronics Symposium &#8211; Proceedings, 2003, pp. 271<\/p>\n<p>S. Scheinert, G. Paasch, T. Lindner,<br \/>\n&#8220;Relevance of organic field effect transistor models: Simulation vs. experiment&#8221;<br \/>\nSynthetic Metals, Vol. 137, No. 1-3, (2003) pp. 1451-1452.<\/p>\n<p>S. Scheinert, G. Paasch, M. Schrr, H. -K. Roth, S. Sensfu and Th. Doll,<br \/>\n&#8220;Subthreshold characteristics of field effect transistors based on P3DDT and an organic insulator&#8221;<br \/>\nJ. Appl. Phys., Vol. 92, 2002, pp. 330-337<\/p>\n<p>S. Scheinert, G. Paasch, Verh.,<br \/>\n&#8220;Dtsch. Phys. Ges. (VI) 36, 207 (2001)&#8221;<br \/>\nISSN 0420-0195<\/p>\n<p>P. H. Nguyen et al.,<br \/>\n&#8220;The influence of deep traps on transient current-voltage characteristics of organic light-emitting diodes,&#8221;<br \/>\nOrganic Electronics Vol. 2, Issue 3-4, December 2001, pp. 105-120<\/p>\n<p>G. Paasch and S. Scheinert,<br \/>\n&#8220;Simulation and modelling of C-V curves of OLEDs with trap states for the holes,&#8221;<br \/>\nSynthetic Metals, Vol. 122, 2001, pp. 145-147<\/p>\n<p>S. Scheinert, G. Paasch, S. Pohlmann, H. -H. H ld and R. Stockmann,<br \/>\n&#8220;Field effect in organic devices with solution-doped arylamino-poly-(phenylene-vinylene)&#8221;<br \/>\nSolid-State Electronics, Vol. 44, Issue 5, May 2000, pp. 845-853<\/p>\n<p>S. Scheinert, G. Paasch, P. H. Nguyen, S. Berleb, W. Brutting,<br \/>\n&#8220;Proceeding ESSDERC 2000&#8221;<br \/>\nFrontier Group, Paris, 2000, p. 444<\/p>\n<p>S. Scheinert, P.H. Nguyen, S. Berleb, G. Paasch, W. Brutting, Verhandl.,<br \/>\n&#8220;DPG&#8221;<br \/>\n(VI) 35 (2000) 559<\/p>\n<\/div><\/section><\/div><div class='av-flex-placeholder'><\/div><div class=\"flex_column av_one_fourth  flex_column_table_cell av-equal-height-column av-align-top av-zero-column-padding   avia-builder-el-3  el_after_av_three_fourth  avia-builder-el-last  \" style='border-radius:0px; '><div  class='avia-builder-widget-area clearfix  avia-builder-el-4  avia-builder-el-no-sibling '><div id=\"nav_menu-28\" class=\"widget clearfix widget_nav_menu\"><div class=\"menu-tcad-published-papers-side-menu-korean-container\"><ul id=\"menu-tcad-published-papers-side-menu-korean\" class=\"menu\"><li id=\"menu-item-25038\" class=\"menu-item menu-item-type-post_type menu-item-object-page menu-item-has-children menu-item-25038\"><a href=\"https:\/\/silvaco.com\/ko\/technical-library\/tcad-published-papers\/\">TCAD &#8211; \uad00\ub828 \ub17c\ubb38<\/a>\n<ul class=\"sub-menu\">\n\t<li id=\"menu-item-34492\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34492\"><a href=\"https:\/\/silvaco.com\/ko\/published-papers\/bipolar-technology\/\">Bipolar Technology<\/a><\/li>\n\t<li id=\"menu-item-34493\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34493\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/cmos-technology\/\">CMOS Technology<\/a><\/li>\n\t<li id=\"menu-item-34494\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34494\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/compound-devices\/\">Compound Devices<\/a><\/li>\n\t<li id=\"menu-item-34495\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34495\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/interconnect-simulation\/\">Interconnect Simulation<\/a><\/li>\n\t<li id=\"menu-item-34496\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34496\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/esd-simulation\/\">ESD Simulation<\/a><\/li>\n\t<li id=\"menu-item-34497\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34497\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/memory-devices\/\">Memory Devices<\/a><\/li>\n\t<li id=\"menu-item-34498\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34498\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/mems\/\">MEMS<\/a><\/li>\n\t<li id=\"menu-item-34499\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34499\"><a href=\"https:\/\/silvaco.com\/ko\/published-papers\/nanoscale-devices\/\">Nanoscale Devices<\/a><\/li>\n\t<li id=\"menu-item-34500\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34500\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/optoelectronics\/\">Optoelectronics<\/a><\/li>\n\t<li id=\"menu-item-34501\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34501\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/organic-device-technology\/\">Organic Device Technology<\/a><\/li>\n\t<li id=\"menu-item-34502\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34502\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/power-device-simulation\/\">Power Device Simulation<\/a><\/li>\n\t<li id=\"menu-item-34503\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34503\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/process-simulation\/\">Process Simulation<\/a><\/li>\n\t<li id=\"menu-item-34504\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34504\"><a href=\"https:\/\/silvaco.com\/ko\/published-papers\/radiation-seu-and-reliability\/\">Radiation, SEU and Reliability<\/a><\/li>\n\t<li id=\"menu-item-34505\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34505\"><a href=\"https:\/\/silvaco.com\/ko\/published-papers\/soi-technology\/\">SOI Technology<\/a><\/li>\n\t<li id=\"menu-item-34506\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34506\"><a href=\"https:\/\/silvaco.com\/ko\/tcad-ko\/tcad-published-papers-ko\/solar-cells\/\">Solar Cells<\/a><\/li>\n\t<li id=\"menu-item-34507\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-34507\"><a href=\"https:\/\/silvaco.com\/ko\/published-papers\/tft-technology\/\">TFT Technology<\/a><\/li>\n<\/ul>\n<\/li>\n<\/ul><\/div><\/div><\/div><\/div><\/div><!--close column table wrapper. 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