Short rod-like and peony-like lead sulfide nano-structure material and preparation method thereof
A nanostructure and nanostructure technology, which is applied in the field of preparing short rod-shaped and peony flower-shaped lead sulfide nanostructures, can solve the problems of complex reaction process, harsh chemical synthesis method conditions, cumbersome reaction device, etc. Uniform appearance and simple operation
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Embodiment 1
[0026] Embodiment 1: Preparation method of short rod-shaped lead sulfide nanostructures using DNA as template
[0027] 50mL of DNA solution with a concentration of 1mg / mL and 50mL of Pb(NO with a concentration of 50mM 3 ) 2 The aqueous solution was mixed and allowed to stand for 24h. The mixture was placed in a three-necked flask and heated in a water bath, and when it reached 40 °C, 50 mL of 0.4 M TAA aqueous solution was added dropwise (0.3 mL / s), stirred at a low speed, and heated to 70 °C for 5 min. Cool the three-neck flask to room temperature in a normal temperature water bath, centrifuge the obtained product at 5000-8000rpm for 20-30min, wash the precipitate obtained by centrifugation twice with deionized water and anhydrous methanol, and freeze-dry at -45°C to obtain DNA. short rod-like nanostructures as templates.
Embodiment 2
[0028] Example 2: Preparation method of peony flower-like lead sulfide nanostructure using DNA as template
[0029] 50mL of 2mg / mL DNA aqueous solution and 50mL of 50mM Pb(NO 3 ) 2 The aqueous solution was mixed and allowed to stand for 24h. The mixture was placed in a three-necked flask and heated in a water bath, and when it reached 40 °C, 50 mL of 0.4 M TAA aqueous solution was added dropwise (0.3 mL / s), stirred at a low speed, and heated to 70 °C for 5 min. Cool the three-neck flask to room temperature in a normal temperature water bath, centrifuge the obtained product at 5000-8000rpm for 20-30min, wash the precipitate obtained by centrifugation twice with deionized water and anhydrous methanol, and freeze-dry at -45°C to obtain DNA. peony flower-like nanostructures as templates.
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