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本文报道了一种基于1,2-二氰基苯(O-DCB)与聚(3-己基噻吩)(P3HT)复合薄膜的高耐久性有机阻变存储器(ORSM).ORSM表现出非易失型和双极性存储特性,电流开关比(Ion/off)超过104,耐久性高达400次,保持时间为105s,Vset和Vreset分别为-6.9 V和2.6 V.器件的阻变机理是陷阱电荷的俘获与去俘获,即负偏压或正偏压诱导电荷陷阱的填充和抽离过程,导致电荷传输方式的改变,从而产生高低电阻间的切换.器件的高耐久性一方面是由于O-DCB较小的分子尺寸和较好的溶解性形成了均匀分布且稳定的电荷陷阱,另一方面是由于O-DCB较好的分子平面促进了其与P3HT共轭链的相互作用.该研究为高耐久性ORSM的实现提供了一种有效途径,加快了ORSM的商业化应用进程. 相似文献
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High performance pentacene organic field-effect transistors consisting of biocompatible PMMA/silk fibroin bilayer dielectric 下载免费PDF全文
Pentacene organic field-effect transistors (OFETs) based on single- or double-layer biocompatible dielectrics of poly(methyl methacrylate) (PMMA) and/or silk fibroin (SF) are fabricated. Compared with those devices based on sin- gle PMMA or SF dielectric or SF/PMMA bilayer dielectric, the OFETs with biocompatible PMMA/SF bilayer dielectric exhibit optimal performance with a high field-effect mobility of 0.21 cm2/Vs and a current on/off ratio of 1.5 × 104. By investigating the surface morphology of the pentacene active layer through atom force microscopy and analyzing the elec- trical properties, the performance enhancement is mainly attributed to the crystallization improvement of the pentacene and the smaller interface trap density at the dielectric/organic interface. Meanwhile, a low contact resistance also indicates that a good electrode/organic contact is formed, thereby assisting the performance improvement of the OFET. 相似文献
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