Rullyani Cut, Sung Chao-Feng, Lin Hong-Cheu, Chu Chih-Wei
Department of Materials Science and Engineering, National Chiao Tung University, Hsinchu, 300, Taiwan (ROC).
Department of Photonics and Display Institute, National Chiao Tung University, Hsinchu, 300, Taiwan (ROC).
Sci Rep. 2018 May 25;8(1):8146. doi: 10.1038/s41598-018-26585-0.
Employing CO-based polymer in electronic applications should boost the consumption of CO feedstocks and provide the potential for non-permanent CO storage. In this study, polypropylene carbonate (PPC) is utilized as a dielectric and substrate material for organic thin film transistors (OTFTs) and organic inverter. The PPC dielectric film exhibits a surface energy of 47 mN m, a dielectric constant of 3, a leakage current density of less than 10 A cm, and excellent compatibility with pentacene and PTCDI-C8 organic semiconductors. Bottom-gate top-contact OTFTs are fabricated using PPC as a dielectric; they exhibits good electrical performance at an operating voltage of 60 V, with electron and hole mobilities of 0.14 and 0.026 cm V s, and on-to-off ratios of 10 and 10, respectively. The fabricated p- and n-type transistors were connected to form a complementary inverter that operated at supply voltages of 20 V with high and low noise margins of 85 and 69%, respectively. The suitability of PPC as a substrate is demonstrated through the preparation of PPC sheets by casting method. The fabricated PPC sheets has a transparency of 92% and acceptable mechanical properties, yet they biodegraded rapidly through enzymatic degradation when using the lipase from Rhizhopus oryzae.
在电子应用中使用基于CO的聚合物应能增加CO原料的消耗,并提供非永久性CO储存的潜力。在本研究中,聚碳酸亚丙酯(PPC)被用作有机薄膜晶体管(OTFT)和有机逆变器的电介质和衬底材料。PPC介电膜的表面能为47 mN m,介电常数为3,漏电流密度小于10 A cm,并且与并五苯和PTCDI-C8有机半导体具有优异的兼容性。以PPC作为电介质制备了底栅顶接触式OTFT;它们在60 V的工作电压下表现出良好的电学性能,电子和空穴迁移率分别为0.14和0.026 cm V s,开/关比分别为10和10。将制备的p型和n型晶体管连接起来形成一个互补逆变器,该逆变器在20 V的电源电压下工作,高低噪声容限分别为85%和69%。通过流延法制备PPC片材证明了PPC作为衬底的适用性。制备的PPC片材具有92%的透明度和可接受的机械性能,但当使用米根霉脂肪酶时,它们会通过酶促降解迅速生物降解。