Preparation of nano-fiber bundle transistor and application of nano-fiber bundle transistor in ion sensing
A nanofiber and transistor technology, which is applied in the field of electronic information, can solve the problems of low strength, poor flexibility, and inability to realize the application of micro devices, etc., and achieve the effect of simple operation, simple equipment, and large sensing signal
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[0021] A preparation of a nanofiber bundle-based transistor, the preparation method comprising the following steps:
[0022] a. Preparation of the mixed solution of pyrrole monomer and auxiliary agent
[0023] Mix additives with a concentration of 10g / L-500g / L, pyrrole monomers with a concentration of 3g / L-30g / L, and deionized water at a temperature of 80°C to prepare a mixed solution A, wherein the additive is anthracene Quinone-2,7-sulfonic acid sodium salt or anthraquinone-2-sulfonic acid sodium salt.
[0024] b. Preparation of the mixed solution of oxidizing agent and initiator
[0025] Mix an oxidizing agent with a concentration of 5g / L-100g / L and 5-sulfosalicylic acid with a concentration of 30g / L-450g / L and deionized water at room temperature to prepare a mixed solution B, wherein the oxidizing agent is 9- Hydrated ferric nitrate or ferric chloride or ammonium persulfate.
[0026] c. Preparation of nanofiber bundle-based transistor electrolyte
[0027] Mix PVA with ...
Embodiment 1
[0036] a. Preparation of the mixed solution of pyrrole monomer and auxiliary agent
[0037] Mix the auxiliary agent with a concentration of 10g / L, the pyrrole monomer with a concentration of 3g / L and deionized water at a temperature of 80°C to prepare a mixed solution A, wherein the auxiliary agent is anthraquinone-2,7-sulfonic acid sodium salt.
[0038] b. Preparation of the mixed solution of oxidizing agent and initiator
[0039] Mix an oxidant with a concentration of 5 g / L, 5-sulfosalicylic acid with a concentration of 30 g / L, and deionized water at room temperature to form a mixed solution B, wherein the oxidant is ferric nitrate 9-hydrate.
[0040] c. Preparation of nanofiber bundle-based transistor electrolyte
[0041] Mix PVA with a concentration of 80g / L and phosphoric acid with a concentration of 100g / L and deionized water at 80°C to form a mixed solution C.
[0042] d. Pyrrole in situ polymerization of nanofiber bundles
[0043] At 5°C, put the PVA-co-PE nanofibe...
Embodiment 2
[0049] a. Preparation of the mixed solution of pyrrole monomer and auxiliary agent
[0050] Mix the auxiliary agent with a concentration of 250g / L, the pyrrole monomer with a concentration of 15g / L and deionized water at a temperature of 80°C to prepare a mixed solution A, wherein the auxiliary agent is anthraquinone-2,7-sulfonic acid sodium salt.
[0051] b. Preparation of the mixed solution of oxidizing agent and initiator
[0052] Mix an oxidant with a concentration of 50 g / L, 5-sulfosalicylic acid with a concentration of 200 g / L, and deionized water at room temperature to form a mixed solution B, wherein the oxidant is ferric nitrate 9-hydrate.
[0053] c. Preparation of nanofiber bundle-based transistor electrolyte
[0054] Mix PVA with a concentration of 100g / L and phosphoric acid with a concentration of 120g / L and deionized water at 80°C to form a mixed solution C;
[0055] d. Pyrrole in situ polymerization of nanofiber bundles
[0056] At 5°C, the PVA- co -Put the...
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