Method for preparing TiO2 nano-wires loaded with gold particles at top ends
A technology of gold particles and nanowires, which is applied in the field of preparation of surface micro-nano functional structures, can solve the problems of poor uniformity of nanowires, weak controllability of the size of noble metal particles and nanowires, achieve size controllability, and accelerate photogenerated electron transfer Speed, evenly distributed effect
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example 1
[0023] Example 1: First, use magnetron sputtering for 20 seconds to coat gold on the surface of the Ti sheet after ultrasonic cleaning, then place the Ti sheet after the gold-coated film in a muffle furnace with a heating rate of 5°C / min, heat it up to 700°C and keep it warm After 2 hours, after cooling with the furnace temperature, short crystalline TiO with gold particles on the top can be directly prepared on the surface of the titanium substrate. 2 Nanowires.
example 2
[0024] Example 2: First, use magnetron sputtering to coat gold on the surface of the Ti sheet after ultrasonic cleaning for 15 minutes, then place the gold-coated Ti sheet in a muffle furnace with a heating rate of 5°C / min, heat it up to 750°C and keep it warm After 4 hours, after cooling with the furnace temperature, crystalline TiO with larger diameter gold particles loaded on the top can be directly prepared on the surface of the titanium substrate. 2 Nanowires.
example 3
[0025] Example 3: First, use magnetron sputtering for 20 seconds to coat gold on the surface of the ultrasonically cleaned Ti sheet, then place the gold-coated Ti sheet in a muffle furnace at a heating rate of 5°C / min, heat it up to 800°C and keep it warm After 6 hours, after cooling with the furnace temperature, the crystalline TiO with smaller diameter gold particles and longer length can be directly prepared on the surface of the titanium substrate. 2 Nanowires.
[0026] From the comparison of Examples 1 and 3, it can be seen that the length of the nanowires gradually increases with the increase of the holding temperature and the extension of the holding time. The average diameter of gold particles increases with the increase of magnetron sputtering time. The longer the sputtering time, the thicker the gold film on the surface, which affects the particle size. The sputtering time of Examples 1 and 3 is short, and the average particle diameter is small, while the sputtering...
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