Functional molecular element, process for producing the same and functional molecular device
A molecular component and functional technology, applied in the field of functional molecular components, to achieve the effect of improving electrical interaction and reducing contact resistance
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Embodiment approach 1
[0072] In Embodiment 1, examples of functional molecular elements mainly corresponding to claims 1 and 2 and claims 16 and 17 will be described.
[0073] exist figure 2 In (a) of Embodiment 1, a structural formula of an example of the molecular structure of the π-electron conjugated molecule 1 constituting the above-mentioned array structure in Embodiment 1 is shown. exist figure 2 (b), schematically shown for the main showing figure 2 The π-electron conjugated molecule 1 shown in (a) of is substantially a three-dimensional structure of the disc-shaped skeleton portion 2 . exist figure 2 In (b) of , the metal ions M, nitrogen atoms, carbon atoms, and oxygen atoms constituting the skeleton portion 2 are shown as round spheres, while hydrogen atoms are omitted, and the side chain portion 3 is shown in a very simple omitted manner.
[0074] like figure 2 As shown in (a) and (b) of the π-electron conjugated molecule 1, the skeleton moiety 2 has biladienone (specifically,...
Embodiment approach 2
[0088] In Embodiment 2, as an example of a functional molecular device mainly corresponding to Claims 14 and 15, it will be described that the functional molecular element 10 described in Embodiment 1 above is formed between opposing electrodes and configured to be insulated Functional molecular devices for gate field effect transistors. image 3 It is a cross-sectional view for explaining the structure of the insulated gate field effect transistor 20 in the present embodiment.
[0089] like image 3 As shown, in the insulated gate field effect transistor 20, the doped silicon substrate 11 also serves as the gate electrode 13 as the above-mentioned control electrode. A silicon oxide layer as the gate insulating film 12 is formed on the surface of the silicon substrate 11 . The source electrode 14 and the drain electrode 15 made of gold are formed on, for example, a silicon oxide layer as the above-described counter electrodes, and the array structure 4 described in Embodimen...
Embodiment
[0097] Now, embodiments of the present invention will be described in detail below.
[0098]
[0099] exist Figure 4 In (a), a π-electron conjugated molecule 7 (corresponding to the above-mentioned π-electron conjugated molecule 1) having a substantially disc-shaped skeleton portion 2 used in the manufacture of the functional molecular element 10 in the present embodiment is shown 's structural formula. exist Figure 4 In (b) and (c) of , the structural formulas of 4-pentyl-4'-cyanobiphenyl (5CB) and tetrahydrofuran (THF) as solvents for producing the functional molecular element 10 are shown. The π-electron conjugated molecule 7 has a dodecyl-C attached to the para position 12 H 25 The phenyl group was used as the flexible side chain moiety of each of the zinc complexes of 3 dimethyl cholinone derivatives.
[0100] In order to correctly evaluate the properties of the functional molecular element 10, the functional molecular element 10 with good reproducibility should ...
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