A kind of capacitive sensor material and its preparation method and application
A capacitive sensor, wood technology, applied in the direction of instruments, measuring devices, measuring force, etc., can solve the problems of not meeting environmental protection requirements, low mechanical strength of hydrogel, high energy consumption, etc.
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Embodiment 1
[0043] Embodiment 1: the preparation of wood airgel
[0044] S1: Take poplar logs, use a circular saw to cut the sapwood into 10mm×10mm×10mm blocks, and then add them to 325mL deionized water containing 2.5mL glacial acetic acid and 3g NaClO 2 solution, and then heated at 75°C for 1 hour, and then repeated the above operation 5 times, washed with water to obtain acid-treated wood; S2: soak the acid-treated wood obtained in S1 into 2.5mol L -1 NaOH and 0.4mol L -1 Na 2 SO 3 solution, heated at 100°C for 5h, and then at 100°C, 2.5mol·L -1 h 2 o 2 Heating in an aqueous solution for 8 hours to obtain alkali-treated wood; S3: immerse the alkali-treated wood obtained in S2 into deionized water to fully wash it, then immerse it in tert-butanol to fully replace the deionized water in the wood block, and then freeze-dry it (temperature: - 50°C, vacuum degree ≤ 20Pa) to obtain wood airgel, the density of which is 0.11g·cm -3 , see attached figure 1 .
Embodiment 2
[0045] Embodiment 2: the preparation of wood airgel
[0046] In Example 1, "get poplar log" into "get balsa log", and other preparation conditions are the same as in Example 1, and the wood airgel density obtained is 0.05g cm -3 .
Embodiment 3
[0047] Embodiment 3: the preparation of wood airgel
[0048] In Example 1, "Use a circular saw to cut the sapwood into 10mm x 10mm x 10mm blocks" to "Use a circular saw to cut the sapwood into 20mm x 20mm x 10mm blocks". Other preparation conditions are the same as embodiment 1, and the wood airgel density that obtains is 0.21g cm -3 .
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