Three-dimensional hollow hybrid structure of polyaniline/graphene capsule and its preparation method and application
A graphene and polyaniline technology, applied in the field of gas sensors, can solve the problems of high working temperature, hinder commercial application, unstable chemical properties of metal oxides, etc., achieve large surface area, facilitate rapid response and recovery, and have Good for quick response
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Embodiment 1
[0036] A kind of preparation method of polyaniline / graphene capsule (PANI / GCs) three-dimensional hollow hybrid structure, comprises the following steps:
[0037]Step 1, using chemical vapor deposition (CVD), using nano-zinc oxide particles as a template, and acetylene as a carbon source to prepare graphene capsules;
[0038] 1.1. Put 20g of nano-ZnO particles into a quartz tube, place the quartz tube in a rotary CVD furnace with a rotation speed of 5 rpm, and heat it to 650 °C at a rate of 10 °C / min in an argon atmosphere. , with the gas flow rate of 30mL / min, acetylene gas was introduced as the reaction gas, and the reaction time was 30min. After the reaction was completed, it was naturally cooled to room temperature under an argon atmosphere, and the product was taken out to grow coated graphene on the surface of nano-ZnO particles. Nanolayers, resulting in graphene / zinc oxide composites;
[0039] 1.2. Soak the product obtained in step 1 in nitric acid (in nitric acid solut...
Embodiment 2
[0045] Compared with embodiment 1, this embodiment differs in that:
[0046] The specific process of step 2 is: take 3 mg of the graphene capsule GCs prepared in step 1 and disperse them in 100 mL of deionized water, and ultrasonically disperse them evenly, and place the obtained dispersion in an ice bath at 0°C.
Embodiment 3
[0048] Compared with embodiment 1, this embodiment differs in that:
[0049] The specific process of step 2 is: take 9 mg of the graphene capsule GCs prepared in step 1 and disperse them in 100 mL of deionized water, and ultrasonically disperse them evenly, and place the obtained dispersion in an ice bath at 0°C.
[0050] The mixed solution after the complete reaction of Example 1, Example 2 and Example 3 was washed alternately with deionized water and ethanol six times respectively. During the washing process, the centrifugal speed of the centrifuge was set to 3800r / min, so that the suspension After centrifugal separation, the obtained samples were dried at 80° C., and were respectively recorded as PANI / GCs-1 (Example 1), PANI / GCs-3 (Example 2) and PANI / GCs-9 (Example 3).
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