Preparation of three-dimensional graphene nano composite material and method for chirally recognizing tryptophan (Trp)
A nano-composite material and graphene technology, which is applied in the preparation of three-dimensional graphene nano-composite materials and its chiral recognition of tryptophan, can solve the problems of inconspicuous recognition effect, long recognition time, and low sensitivity, and achieve excellent electronic performance. Chemical properties, high sensitivity, and good selectivity
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Embodiment 1
[0026] A preparation method of a three-dimensional graphene nanocomposite material, comprising the following steps:
[0027] 1) Preparation of three-dimensional graphene (3D-G):
[0028] 40 mg of graphene oxide was ultrasonically treated in 20 mL of deionized water for 1 hour to prepare a graphene oxide dispersion, which was then placed in a container
[0029] Dissolve 80 mg of L-cysteine in the graphene oxide dispersion, then add 500 μL of concentrated ammonia water dropwise, and stir evenly;
[0030] Finally, put the above-mentioned reactants in a microwave oven for 5 minutes to react to obtain a black suspension; after cooling to room temperature, the black suspension was subjected to suction filtration, during the process of suction filtration, it was repeatedly washed with deionized water, and freeze-dried for 24 hours to obtain Three-dimensional graphene powder;
[0031] 2) Preparation of three-dimensional graphene nanocomposite (3D-G / HP-β-CD):
[0032] First, 20 mg...
Embodiment 2
[0038] A method for chiral recognition of tryptophan by a three-dimensional graphene nanocomposite material, comprising the steps of:
[0039] 1) Take the 3D-G / HP-β-CD powder prepared in Example 1 in the mixture of ethanol and water, and ultrasonically treat it to make a 1 mg / mL dispersion; then take 5 μL of 3D-G / HP-β -CD dispersion liquid was drop-coated on the surface of the polished glassy carbon electrode and dried to obtain a 3D-G / HP-β-CD modified electrode;
[0040] 2) Immerse the 3D-G / HP-β-CD modified electrode in a solution containing 0.1M KCl, 5mM K 3 [Fe(CN) 6 ], 5mM K 4 [Fe(CN) 6 ] (pH 7.0), the electrochemical impedance spectroscopy (EIS) and cyclic voltammetry (CV) characterizations were carried out respectively (see Figure 4 , Figure 5 ), the 3D-G / HP-β-CD modified electrode exhibited low electrochemical impedance and high peak current;
[0041] 3) The 3D-G / HP-β-CD modified electrode was respectively immersed in a PBS buffer solution of 1 mM tryptophan at ...
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