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去润湿图案化制备TIPS-并五苯有机薄膜晶体管
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作者 冯翔 林广庆 +2 位作者 张俊 李曼菲 邱龙臻 《液晶与显示》 CAS CSCD 北大核心 2013年第3期338-343,共6页
利用润湿/去润湿的方法配合旋涂工艺制备了图案化的TIPS-并五苯有机半导体薄膜,制备了顶接触有机薄膜晶体管(OTFTs)。金相显微镜观察发现,转速的选择对TIPS-并五苯薄膜结晶形貌的影响较大。在1 000~2 000r/min转速下制备的薄膜完整性好... 利用润湿/去润湿的方法配合旋涂工艺制备了图案化的TIPS-并五苯有机半导体薄膜,制备了顶接触有机薄膜晶体管(OTFTs)。金相显微镜观察发现,转速的选择对TIPS-并五苯薄膜结晶形貌的影响较大。在1 000~2 000r/min转速下制备的薄膜完整性好,结晶区域较大;而转速增加到3 000r/min后,难以获得完整的薄膜且晶粒尺寸变小。电学性能研究得到器件的输出曲线、转移曲线、开关电流比、阈值电压、场效应迁移率,发现结晶形貌好的器件具有更好的电学性能。1 000r/min转速下制备OTFT器件最大场效应迁移率为5.16×10-2 cm·V-1·s-1,电流开关比为8×103。 展开更多
关键词 有机薄膜晶体管 润湿图案 电性能
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Wettability Pattern for Ultrafast Water Self‑Pumping on Cemented Carbide Surface 被引量:1
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作者 SUN Pengcheng HAO Xiuqing +3 位作者 NIU Yusheng XU Wenhao LI Liang HE Ning 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第3期416-423,共8页
A facile method to fabricate wettability pattern(two extreme wettabilities arranged in a pattern)to realize water self-pumping is proposed on cemented carbide while not necessarily depositing other materials on substr... A facile method to fabricate wettability pattern(two extreme wettabilities arranged in a pattern)to realize water self-pumping is proposed on cemented carbide while not necessarily depositing other materials on substrate surface.The water self-pumping is achieved by arranging wedge shaped superhydrophilic domain in superhydrophobic substrate using laser machining.Through single factor experiments,it is found that the key to the extreme wettabilities,micro⁃and nano⁃structures,is rendered by laser machining processes and is influenced by laser parameters.Meanwhile,the proper laser parameters that are used to fabricate required micro-and nano⁃structures are obtained.Finally,the water transport experiment is carried out,which shows that the velocity of water bulge could be up to 362 mm/s when the wedge angle is 3°.The mechanism of the water self-pumping is analyzed and it is found that the migration of water bulge is governed by Laplace pressure of the water bulge induced by the wedge micro-groove. 展开更多
关键词 wettability pattern cemented carbide water self-pumping micro-and nano⁃structures laser machining
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