A kind of pamam-modified water-soluble upconversion nanoparticles and preparation method thereof
A nanoparticle, water-soluble technology, applied in the field of nanomaterials, can solve the problems of poor water solubility and biocompatibility, limited application, etc., and achieve the effects of good water solubility, high luminous intensity, and good application prospects.
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Embodiment 1
[0020] 0.78mmol of YCl 3 , 0.2mmol of YbCl 3 , 0.02mmol of ErCl 3 5mL of methanol solution, 6mL of oleic acid OA and 15mL of 1-octadecene ODE were ultrasonically mixed, heated to 150°C under argon protection, and kept for 30 minutes to form a light yellow solution, then cooled to 50°C C, add NH containing 0.16g ammonium fluoride 4 F and 0.10g NaOH in methanol solution, ultrasonic for 30 minutes, then slowly heated to 110°C and maintained for 1h to remove methanol and residual water, then heated to 320°C at a speed of 1°C / min under argon protection, Keep for 2 hours, then naturally cool to room temperature, add absolute ethanol, centrifuge to obtain a precipitate, and then repeatedly wash with water and ethanol to finally obtain upconversion nanoparticles that can be dissolved in cyclohexane.
[0021] Mix 1g / L of 5mL up-converting luminescent nanoparticles hexane dispersion solution with 0.6g / L of 5mL nitrosonium tetrafluoroborate NOBF 4 The dichloromethane solution was mix...
Embodiment 2
[0024] 0.69 mmol YCl 3 , 0.3mmol of YbCl 3 , 0.01mmol of ErCl 3 5mL of methanol solution, 6mL of oleic acid OA and 15mL of 1-octadecene ODE were ultrasonically mixed, heated to 150°C under argon protection, and kept for 30 minutes to form a light yellow solution, then cooled to 50°C C, add NH containing 0.16g ammonium fluoride 4 F and 0.10g NaOH in methanol solution, ultrasonic for 30 minutes, then slowly heated to 110°C and maintained for 1h to remove methanol and residual water, then heated to 320°C at a speed of 1°C / min under argon protection, Keep for 2 hours, then naturally cool to room temperature, add absolute ethanol, centrifuge to obtain a precipitate, and then repeatedly wash with water and ethanol to finally obtain upconversion nanoparticles that can be dissolved in cyclohexane.
[0025] Mix 2g / L of 5mL up-converting luminescent nanoparticles hexane dispersion solution with 0.3g / L of 5mL nitrosonium tetrafluoroborate NOBF 4 The dichloromethane solution was mixed...
Embodiment 3
[0027] 0.78mmol of YCl 3 , 0.2mmol of YbCl 3 , 0.02mmol of TmCl 35mL of methanol solution, 6mL of oleic acid OA and 15mL of 1-octadecene ODE were ultrasonically mixed, heated to 150°C under argon protection, and kept for 30 minutes to form a light yellow solution, then cooled to 50°C C, add NH containing 0.16g ammonium fluoride 4 F and 0.10g NaOH in methanol solution, ultrasonic for 30 minutes, then slowly heated to 110°C and maintained for 1h to remove methanol and residual water, then heated to 320°C at a speed of 1°C / min under argon protection, Keep for 2 hours, then naturally cool to room temperature, add absolute ethanol, centrifuge to obtain a precipitate, and then repeatedly wash with water and ethanol to finally obtain upconversion nanoparticles that can be dissolved in cyclohexane.
[0028] Mix 2g / L of 5mL up-converting luminescent nanoparticles hexane dispersion solution with 0.6g / L of 5mL nitrosonium tetrafluoroborate NOBF 4 The dichloromethane solution was mixe...
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