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邵丙铣  陈祥君 《分析化学》1993,21(7):861-864
本文论述了WO_3薄膜氢离子敏器件的结构、原理、制备技术和测试分析。利用WO_3薄膜在H+溶液中由绝缘转化为导电特性,成功地研制成氢离子敏器件。这是一种简易而经济的微型pH敏器件技术。  相似文献   
2.
Organic photovoltaic (OPV) cells were fabricated via vacuum vapor deposition with {4-[2-(3-di-cyanomethylidene-5,5-dimethylcyclohexenyl)vinyl]phenyl}di(1-naphthyl)amine (DNP-2CN) as the electron donor, and fullerene (C60) as the electron acceptor. A thin film (10 nm) of tris(8-quinolinolato)aluminum (Alq3) was adopted as the buffer layer. A device based on this DNP-2CN exhibited an open circuit voltage (Voc) of 370 mV, a short-circuit current density (Jsc) of 0.61 mAocm 2, and a white-light power conversion efficiency ( η) of 0.09% (AM1.5, 75 mW.cm^- 2).  相似文献   
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本文通过真空蒸镀的方法,制备了以二(1-萘基){4-[2-(3-二腈基亚甲基-5,5-二甲基-1-环己烯基)乙烯基]苯基}胺(DNP-2CN)作为电子给体,富勒烯(C60)作为电子受体的有机光电池器件,并引入10 nm厚度的三(8-羟基喹啉)铝(Alq3)作为缓冲层。在模拟太阳光(AM1.5, 75 mW·cm-2)下,基于DNP-2CN制备的太阳能电池的开路电压为370 mV,短路电流密度为0.61 mA·cm-2,光电转换效率为0.09%。  相似文献   
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利用STM和CV方法测定有机发光材料的能带参数   总被引:1,自引:0,他引:1       下载免费PDF全文
利用扫描隧道显微镜/扫描隧道谱(STM/STS)的技术,研究了有机发光材料Alq3、DPN-2CN和DNP-2CN的表面电子结构。将材料DPN-2CN和DNP-2CN的表面电子结构与Alq3的表面电子结构进行对比,判定了DPN-2CN和DNP-2CN的最低空轨道(LUMO)能级。通过电化学循环伏安(CV)法,对DPN-2CN和DNP-2CN的LUMO能级和最高占有轨道(HOMO)能级进行了表征。两种测试方法所得到的LUMO能级参数基本一致。  相似文献   
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Silicon nanowires (SiNWs) were synthesized with silicon monoxide as the only starting material. At the beginning, a protective gas argon was charged into the reaction chamber and the temperature ramp was controlled at 3 ℃·min-1. The growth condition for SiNWs was controlled at 480 ℃ under the pressure of 2.8 MPa. The morphology and the structure of the products were characterized by TEM, HRTEM and XRD. The results revealed that SiNWs were diamond structure and their diameters were distributed from 5 to 25 nm. The SiNW was single crystal in the central core and was coated with amorphous silica shell at the exterior surface. Influenced by the quantum effect, Raman spectrum of the SiNWs was found to be redshifted. The oxide-assisted growth mechanism was suggested to explain the growth model of self-assembled SiNWs.  相似文献   
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