Sodium tetraphenylborate-based enantiomer potential sensor and application of enantiomer potential sensor in detection of leucinemethyl ester
A technology of sodium tetraphenylborate and potential sensor, which is applied in the direction of instruments, measuring devices, scientific instruments, etc., can solve the problems such as no public reports of sodium tetraphenylborate, and achieve low cost, fast analysis speed and simple equipment Effect
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Embodiment 1
[0037] Weigh 4 parts of sodium tetraphenylborate, 64 parts of plasticizer "DBS" and 32 parts of PVC in parts by weight, and dissolve them in 600 parts of tetrahydrofuran; when each component is completely dissolved, pour the solution on a glass plate to unfold naturally, Place it at room temperature for 24 hours to obtain a PVC film; the prepared PVC film is glued to one end of a PVC pipe with an inner diameter of 8 mm, an outer diameter of 10 mm and a length of 10 cm with a THF solution of 8% PVC concentration, and place it for 10 min. After the solvent is completely volatilized, the KCl filling solution is poured into the tube, and the Ag / AgCl internal reference electrode is inserted to obtain a PVC film electrode; the PVC film electrode and calomel electrode are combined to form the required enantiopotential sensor. The sensor expression is as follows:
[0038] Hg-Hg 2 Cl 2 ︱KCl(satd.)|Test solution︱PVC film︱0.1mol L -1 KCl|AgCl-Ag.
Embodiment 2
[0040] Repeat Example 1 with the following differences: the parts by weight of the PVC film component consist of: 3 parts of sodium tetraphenylborate, 64.7 parts of plasticizer "o-NPOE" and 32.3 parts of PVC.
Embodiment 3
[0042] Example 1 was repeated with the following differences: 3 parts sodium tetraphenylborate, 65 parts plasticizer "DOS" and 32.5 parts PVC.
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