Nanogold solution and method for detecting Co<2+> by using same
A nano-gold and solution technology, applied in the fields of test chemistry, environmental science, analytical chemistry and computational chemistry, can solve the problems of complex sample preparation steps, ion interference, cumbersome instruments and equipment, and achieve simple and easy modification methods and competitive reactions. Strong and repeatable effect
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Embodiment 1
[0061] In this example, the functionalized nano-gold solution was prepared by the following steps:
[0062] (1) Preparation of nano-gold mixed solution
[0063] At room temperature, take 5mL of 5mM chloroauric acid tetrahydrate (HAuCl 4 4H 2 (0) solution, add 95mL of deionized water and 1.5mL of 2M cetyltrimethylammonium bromide (CH 3 (CH 2 ) 15 NBr(CH 3 ) 3 ) solution, stirred for 2) min; then 1.5 mL of 0.1 M sodium borohydride (NaBH 4 ), continue stirring for 20 min to prepare a mixed solution of gold nanoparticles, and place it in a refrigerator at 4°C for later use.
[0064] (2) Ionic clusters containing sulfur elements and carbon-oxygen groups (O=C=O) modify gold nanoparticles
[0065] Take 50mL of the nano-gold mixed solution prepared in the above step (1), stir, and add 40 μL of thioglycolic acid (HSCH 2 CO 2 H), after stirring and mixing uniformly, use 0.2M sodium hydroxide (NaOH) or hydrochloric acid (HCl) to adjust the pH value of the mixed solution to 5.0,...
Embodiment 2
[0087] In this example, the functionalized nano-gold solution was prepared by the following steps:
[0088] (1) Preparation of nano-gold mixed solution
[0089] At room temperature, take 5mL of 5mM chloroauric acid trihydrate (HAuCl 4 ·3H 2 (0) solution, add 95mL of deionized water and 5mL of 0.04M cetyltrimethylammonium bromide (CH 3 (CH 2 ) 15 NBr(CH 3 ) 3 ) solution, stirred for 15min; then 2mL of 0.1M potassium borohydride (KBH 4 ), continue stirring for 20 min to prepare a mixed solution of gold nanoparticles, and place it in a refrigerator at 4°C for later use.
[0090] (2) Ionic clusters containing sulfur elements and carbon-oxygen groups (O=C=O) modify gold nanoparticles
[0091] Take 100 mL of the nano-gold mixed solution prepared in the above step (1), stir, and add 100 μL of 3-mercaptopropionic acid (HSCH 2 CH 2 CO 2 H), after stirring and mixing evenly, use 0.2M sodium hydroxide (NaOH) or hydrochloric acid (HCl) to adjust the pH value of the mixed solution...
Embodiment 3
[0094] In this example, the functionalized nano-gold solution was prepared by the following steps:
[0095] (1) Preparation of nano-gold mixed solution
[0096] At room temperature, take 5mL of 5mM chloroauric acid (HAuCl 4 ) solution, add 95mL of deionized water and 1mL of 0.5M cetyltrimethylammonium bromide (CH 3 (CH 2 ) 15 NBr(CH 3 ) 3 ) solution, stirred for 10 min; the oil bath was heated to 80°C, then 50mL of 1M L-Ascorbic acid (L-Ascorbic acid) was added dropwise, continued heating and stirring for 5min, and cooled naturally to obtain a mixed solution of gold nanoparticles, which was placed in a 4°C refrigerator for later use .
[0097] (2) Ionic clusters containing sulfur elements and carbon-oxygen groups (O=C=O) modify gold nanoparticles
[0098] Get 100mL of the nano-gold mixed solution prepared in the above step (1), stir, and add 10mL of 92mM L-cysteine (HSCH 2 CHNH 2 CO 2 H), after stirring and mixing evenly, use 0.2M potassium hydroxide (KOH) and hydr...
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