Method for Determination of Urease Based on Nano-copper Oxide
A nano-copper oxide, copper oxide technology, applied in analytical chemistry and nano fields, achieves the effect of low cost, low sample demand and high sensitivity
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example 1
[0045] The specific preparation steps of nano-copper oxide are as follows: (1) Take 150 ml of 0.02 mol / L copper acetate solution and 0.5 ml of glacial acetic acid into a three-necked flask equipped with a condenser, stir and heat to boiling; (2) Quickly add 0.04 g / ml sodium hydroxide solution 10 ml, continue to stir for 5 minutes after the addition, to obtain a black copper oxide precipitate; (3) centrifuge the black copper oxide precipitate obtained from the reaction, wash with absolute ethanol three times, and dry under reduced pressure, that is A nano-copper oxide powder with a diameter of 6 nm was obtained.
example 2
[0047] 50 µL concentration of 120 mmol / L hydrogen peroxide solution, 50 µL concentration of 80 mmol / L p-hydroxyphenylpropionic acid and 200 µL concentration of 2 mg / L nano-copper oxide solution prepared in Example 1 were added to 700 µL In a phosphate buffer solution (pH 10.25) with a concentration of 100mmol / L, mix and shake well, place in a warm bath at 65°C, and measure the fluorescence spectrum after 15 minutes. Such as figure 1 As shown, the excitation wavelength of the fluorescent product is 320 nm, and the emission wavelength is 409 nm.
example 3
[0049] Add 50 µL concentration of 120 mmol / L hydrogen peroxide solution, 50 µL concentration of 80 mmol / L p-hydroxyphenylpropionic acid and 200 µL concentration of 2 mg / L nano-copper oxide prepared in Example 1 to a concentration of 700 µL 100mmol / L and different pH phosphate buffer solutions (pH 9-11), mix and shake well, place in a warm bath at 65°C, and measure its fluorescence intensity at 409nm after 15 minutes (excitation wavelength is 320nm). Such as figure 2 As shown, the fluorescence intensity reaches the maximum value at pH 10.1~10.3.
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