Preparation method of urea sensor with Janus structure artificial cell mode
A urea sensor and artificial cell technology, applied in the field of catalytic detection, can solve the problems of requiring special instruments and complex urea concentration measurement methods, and achieve the effects of convenient portability and transportation, high selectivity, and good data reproducibility
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specific Embodiment approach 1
[0026] Specific embodiment one: what this embodiment records is a kind of preparation method of the urea sensor with Janus structure artificial cell model, described method step is as follows:
[0027] Step 1, preparation of artificial cell model based on urease
[0028] (1) Preparation of aqueous phase solution: dissolve urease in deionized water to prepare 5-20 mg / mL urease aqueous solution;
[0029] (2) Preparation of oil phase solution: mix tributyrin and oleic acid in a volume ratio of 4:1;
[0030] (3) Add the aqueous phase solution of (1) to the oil phase solution of (2), shake it for 20-30s with a vortex oscillator to obtain an oil-in-water microemulsion, and let it stand for 30 minutes to prepare an artificial cell based on urease Model; the size of the model can be adjusted by controlling the oil-water ratio and vortex time;
[0031] Step 2, preparation of phospholipid-based artificial cell model
[0032] (1) Preparation of phospholipid (dimyristoylphosphatidylcho...
specific Embodiment approach 2
[0037] Specific embodiment two: the preparation method of a kind of urea sensor with Janus structure artificial cell model described in specific embodiment one, in step one (3), the volume ratio of described aqueous phase solution and oily phase solution is 10~20 :1.
specific Embodiment approach 3
[0038]Specific embodiment three: the preparation method of a kind of urea sensor with Janus structure artificial cell model described in specific embodiment one, in step two (2), the volume ratio of described aqueous phase solution and glycerol triacetate is 10: 1~2.
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