Journal of Synthetic Crystals, Volume. 49, Issue 2, 259(2020)
Study on Concentration Adjusting Method of NaYbF4 Nanocrystals
[1] [1] Tang X L, Wu J, Lin B L, et al. Near-infrared light-activated red-emitting upconverting nanoplatform for T1-weighted magnetic resonance imaging and photodynamic therapy[J].Acta Biomaterialia,2018,74(1):360-373.
Tang X L, Wu J, Lin B L, et al. Near-infrared light-activated red-emitting upconverting nanoplatform for T1-weighted magnetic resonance imaging and photodynamic therapy[J].Acta Biomaterialia,2018,74(1):360-373.
[2] [2] He S, Johnson N J, Huu V A N, et al. Leveraging spectral matching between photosensitizers and upconversion nanoparticles for 808nm-activated photodynamic therapy[J].Chem. Mater.,2018,30(12):3991-4000.
He S, Johnson N J, Huu V A N, et al. Leveraging spectral matching between photosensitizers and upconversion nanoparticles for 808nm-activated photodynamic therapy[J].Chem. Mater.,2018,30(12):3991-4000.
[3] [3] Ma P, Xiao H, Yu C, et al. Enhanced cisplatin chemotherapy by iron oxide nanocarrier-mediated generation of highly toxic reactive oxygen species[J].Nano Lett.,2017,17(2):928-937.
Ma P, Xiao H, Yu C, et al. Enhanced cisplatin chemotherapy by iron oxide nanocarrier-mediated generation of highly toxic reactive oxygen species[J].Nano Lett.,2017,17(2):928-937.
[4] [4] Yang X J, Xiao Q Q, Niu C X, et al. Multifunctional core-shell upconversion nanoparticles for targeted tumor cells induced by near-infrared light[J].J. Mater. Chem. B,2013,1(21):2757-2763.
Yang X J, Xiao Q Q, Niu C X, et al. Multifunctional core-shell upconversion nanoparticles for targeted tumor cells induced by near-infrared light[J].J. Mater. Chem. B,2013,1(21):2757-2763.
[5] [5] Li F Y, Du Y, Liu J N, et al. Responsive assembly of upconversion nanoparticles for pH-activated and near- Infrared-triggered photodynamic therapy of deep tumors[J].Adv. Mater.,2018,30(35):1802808.
Li F Y, Du Y, Liu J N, et al. Responsive assembly of upconversion nanoparticles for pH-activated and near- Infrared-triggered photodynamic therapy of deep tumors[J].Adv. Mater.,2018,30(35):1802808.
[6] [6] Wilson B C, Patterson M S. The physics, biophysics and technology of photodynamic therapy[J].Phys. Med. Biol.,2008,53(9):R61.
Wilson B C, Patterson M S. The physics, biophysics and technology of photodynamic therapy[J].Phys. Med. Biol.,2008,53(9):R61.
[7] [7] Liu K, Liu X M, Zeng Q H, et al. Covalently assembled NIR nanoplatform for simultaneous fluorescence imaging and photodynamic therapy of cancer cells[J].ACS Nano,2012,6(5):4054-4062.
Liu K, Liu X M, Zeng Q H, et al. Covalently assembled NIR nanoplatform for simultaneous fluorescence imaging and photodynamic therapy of cancer cells[J].ACS Nano,2012,6(5):4054-4062.
[8] [8] Punjabi A, Wu X, Tokatli-Apollon A, et al. Amplifying the red-emission of upconverting nanoparticles for biocompatible clinically used prodrug-induced photodynamic therapy[J].ACS Nano,2014,8(10):10621-10630.
Punjabi A, Wu X, Tokatli-Apollon A, et al. Amplifying the red-emission of upconverting nanoparticles for biocompatible clinically used prodrug-induced photodynamic therapy[J].ACS Nano,2014,8(10):10621-10630.
[9] [9] Li S W, Cui S S, Yin D Y, et al. Dual antibacterial activities of a chitosan-modified upconversion photodynamic therapy system against drug-resistant bacteria in deep tissue[J].Nanoscale,2017,9(11):3912-3924.
Li S W, Cui S S, Yin D Y, et al. Dual antibacterial activities of a chitosan-modified upconversion photodynamic therapy system against drug-resistant bacteria in deep tissue[J].Nanoscale,2017,9(11):3912-3924.
[10] [10] Zhang J Y, Chen S, Wang P, et al. NaYbF4 nanoparticles as near infrared light excited inorganic photosensitizers for deep penetration in photodynamic therapy[J].Nanoscale,2017,9(8):2706-2710.
Zhang J Y, Chen S, Wang P, et al. NaYbF4 nanoparticles as near infrared light excited inorganic photosensitizers for deep penetration in photodynamic therapy[J].Nanoscale,2017,9(8):2706-2710.
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ZHANG Jiayin, LIANG Hong, LIN Weiqiu, WANG Runqi, ZHANG Zhiguo. Study on Concentration Adjusting Method of NaYbF4 Nanocrystals[J]. Journal of Synthetic Crystals, 2020, 49(2): 259
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Received: --
Accepted: --
Published Online: Jun. 15, 2020
The Author Email: Jiayin ZHANG (grace_zhang1986@yeah.net)
CSTR:32186.14.