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Photo emission spectroscopy for Ag-TCNQ (TCNQ = tetracyanoquinodimethane) nanowires

机译:Ag-TCNQ(TCNQ =四氰基喹二甲烷)纳米线的光发射光谱

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The electrical conductivity of many TCNQ charge-transfer complexes generated much interest in the subject of field emission displays (FEDs). Ag-TCNQ nanowires were prepared using a vacuum vapor-transport reaction method at a lower temperature, showing good field emission properties in our previous work. In this work, XPS test was carried out using the VG Scienctific suface analysis instrument (XR5 type) to study the charge transfer. Low energy resolution spectra were obtained by illuminating the sample with standard Al Kα radiation( hv =1486. 6 eV ). UPS test was done on the instrument of VG ADES-400 type, with illumination of He I line( hv = 21. 2 eV ). Results from XPS test for those nanowires showed that the charge transfer between the electron donor and acceptor was not complete in accord with the Raman analysis. The work function of the nanowires was measured by the ultraviolet photoemission spectroscopy (UPS) with the threshold energy method. UPS analysis showed that the highest of state occupied is 0.78 eV below the Femi level and the work function is about 5. 45 eV, which is different from the effective work function of 1.77 eV estimated by the Fowler-Nordheim plot in this theory. The nanostructure of organic nanowires and the special electrical conductivity by the charge transfer process are attributed to the good field emission property.
机译:许多TCNQ电荷转移络合物的电导率引起了场发射显示器(FED)的广泛关注。 Ag-TCNQ纳米线是在较低的温度下使用真空气相传输反应方法制备的,在我们之前的工作中显示出良好的场发射特性。在这项工作中,使用VG科学表面分析仪(XR5型)进行XPS测试以研究电荷转移。通过用标准AlKα辐射(hv = 1486。6 eV)照射样品获得低能量分辨率光谱。 UPS测试是在VG ADES-400型仪器上进行的,在He I线的照度下(hv = 21. 2 eV)。 XPS测试这些纳米线的结果表明,根据拉曼分析,电子供体和受体之间的电荷转移不完全。纳米线的功函数通过阈值能量法通过紫外光发射光谱法(UPS)测量。 UPS分析表明,最高的状态占据比Femi水平低0.78 eV,其功函数约为5。45eV,这与该理论中Fowler-Nordheim图估计的有效功函数1.77 eV不同。有机纳米线的纳米结构和通过电荷转移过程产生的特殊电导率归因于良好的场发射特性。

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