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超声波-化学沉淀法制备牙科纳米氧化铝陶瓷粉体 被引量:3
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作者 宋文植 刘晓秋 +2 位作者 孙宏晨 杨海滨 邹广田 《口腔医学研究》 CAS CSCD 2006年第1期15-17,共3页
目的:制备分散性好,粒度均匀的纳米α-A l2O3粉体。方法:应用超声波-化学沉淀法,制备氢氧化铝前驱体,经900℃、1 000℃、1 100℃、1 200℃煅烧后测试粉体性能。结果:1 200℃煅烧得到的A l2O3粉体为α-A l2O3,其晶粒平均粒径为D202=31.44... 目的:制备分散性好,粒度均匀的纳米α-A l2O3粉体。方法:应用超声波-化学沉淀法,制备氢氧化铝前驱体,经900℃、1 000℃、1 100℃、1 200℃煅烧后测试粉体性能。结果:1 200℃煅烧得到的A l2O3粉体为α-A l2O3,其晶粒平均粒径为D202=31.44 nm。结论:以乙醇为反应溶剂,在低频超声波作用下可制备出分散性好、粒度均匀的纳米级α-A l2O3粉体。 展开更多
关键词 牙科铝瓷 纳米材料 超声-化学沉淀法
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超声波-沉淀法制备PDP小颗粒蓝粉及其粉体ζ电位的测试 被引量:1
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作者 袁曦明 杨应国 +3 位作者 王永钱 王娟娟 王峰 谢安 《稀土》 EI CAS CSCD 北大核心 2010年第4期45-49,69,共6页
采用超声波-沉淀法制备PDP小颗粒蓝色荧光粉BaMgAl10O17:0.1Eu,实验最佳条件为:前驱液PH=8~9,热预温度为650℃,灼烧温度1370℃,超声波作用时间为2h。产物经粉晶衍射仪检测为BaMgAl10O17,其厚度约为80nm的六方晶颗粒,平均粒度为360nm的... 采用超声波-沉淀法制备PDP小颗粒蓝色荧光粉BaMgAl10O17:0.1Eu,实验最佳条件为:前驱液PH=8~9,热预温度为650℃,灼烧温度1370℃,超声波作用时间为2h。产物经粉晶衍射仪检测为BaMgAl10O17,其厚度约为80nm的六方晶颗粒,平均粒度为360nm的小颗粒蓝色荧光粉,相对发光强度有明显提高。实验通过在制备样品的分散介质中加适量硝酸来调节样品表面的ζ电位,其样品原来ζ电位的负值可调控为正值,可以改善蓝粉在后续PDP涂屏工艺浆料中的流变行为,有利于提高PDP制屏的质量。 展开更多
关键词 超声-沉淀法 PDP蓝粉 小颗粒 Ζ电位
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Effect of ultrasonic on structure and electrochemical performance of α-Ni(OH)_2 electrodes 被引量:2
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作者 张仲举 朱燕娟 +3 位作者 包杰 周卓均 叶贤聪 许庆盛 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第12期2654-2659,共6页
Al/Co co-doped α-Ni(OH)2 samples were prepared by either ultrasonic co-precipitation method (Sample B) or co-precipitation method (Sample A). The crystal structure and particle size distribution of the prepared... Al/Co co-doped α-Ni(OH)2 samples were prepared by either ultrasonic co-precipitation method (Sample B) or co-precipitation method (Sample A). The crystal structure and particle size distribution of the prepared samples were examined by X-ray diffraction (XRD) and laser particle size analyzer, respectively. The results show that Sample B has more crystalline defects and smaller average diameter than Sample A. The cyclic voltammetry and electrochemical impedance spectroscopy measurements indicate that Sample B has better electrochemical performance than Sample A, such as better reaction reversibility, lower charge-transfer resistance and better cyclic stability. Proton diffusion coefficient of Sample B is 1.96×10-10cm2/s, which is two times as large as that (9.78×10-11cm2/s) of Sample A. The charge-discharge tests show that the discharge capacity (308 mA·h/g) of Sample B is 25 mA·h/g higher than that of Sample A (283 mA·h/g). 展开更多
关键词 Al/Co co-doped α-Ni(OH)2 ultrasonic co-precipitation method proton diffusion coefficient charge-transfer resistance electrochemical performance
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Structure and electrochemical performance of Cu singly doped and Cu/Al co-doped nano-nickel hydroxide 被引量:1
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作者 包杰 朱燕娟 +4 位作者 庄义环 许庆胜 赵汝冬 刘泳林 钟浩良 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第2期445-450,共6页
Nanometer Cu singly doped and Cu/Al co-doped nickel hydroxides were synthesized by ultrasonic-assisted precipitation method. Their crystal structure, particle size, morphology, tap density and electrochemical performa... Nanometer Cu singly doped and Cu/Al co-doped nickel hydroxides were synthesized by ultrasonic-assisted precipitation method. Their crystal structure, particle size, morphology, tap density and electrochemical performance were investigated. The results show that the samples have a-phase structure with narrow particle size distribution. Cu singly doped nano-Ni(OH)2 contains irregular particles, while Cu/Al co-doped nano-Ni(OH)2 displays a quasi-spherical shape and has a relatively higher tap density. Composite electrodes were prepared by mixing 8% (mass fraction) nanometer samples with commercial micro-size spherical nickel. The charge/discharge test and cyclic voltammetry results indicate that the electrochemical performance of Cu/Al co-doped nano-Ni(OH)2 is better than that of Cu singly doped nano-Ni(OH)2, the former's discharge capacity reaches 330 mA.h/g at 0.2C, 12 mA.h/g and 91 mA.h/g larger than that of Cu singly doped sample and pure spherical nickel electrode, respectively. Moreover, the proton diffusion coefficient of Cu/Al co-doped sample is 52.3% larger than that of Cu singly doped sample. 展开更多
关键词 nano-Ni(OH)2 ultrasonic-assisted precipitation doping electrochemical performance
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Sono-assisted preparation of magnetic ferroferric oxide/graphene oxide nanoparticles and application on dye removal 被引量:4
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作者 江国栋 常青 +2 位作者 杨福福 胡晓允 唐和清 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第3期510-515,共6页
A simple ultrasound-assisted co-precipitation method was developed to prepare ferroferric oxide/graphene oxide magnetic nanoparticles(Fe_3O_4/CO MNPs).The hysteresis loop of Fe_3O_4/GO MNPs demonstrated that the sampl... A simple ultrasound-assisted co-precipitation method was developed to prepare ferroferric oxide/graphene oxide magnetic nanoparticles(Fe_3O_4/CO MNPs).The hysteresis loop of Fe_3O_4/GO MNPs demonstrated that the sample was typical of superparamagnetic material.The samples were characterized by transmission electron microscope,and it is found that the particles are of small size.The Fe_3O_4/GO MNPs were further used as an adsorbent to remove Rhodamine B.The effects of initial pH of the solution,the dosage of adsorbent,temperature,contact time and the presence of interfering dyes on adsorption performance were investigated as well.The adsorption equilibrium and kinetics data were fitted well with the Freundlich isotherm and the pseudosecond-order kinetic model respectively.The adsorption process followed intra-particle diffusion model with more than one process affecting the adsorption of Rhodamine B.And the adsorption process was endothermic in nature.Furthermore,the magnetic composite with a high adsorption capacity of Rhodamine B could be effectively and simply separated using an external magnetic field.And the used particles could be regenerated and recycled easily.The magnetic composite could find potential applications for the removal of dye pollutants. 展开更多
关键词 Fe3O4/graphene oxide nanoparticles Sonochemical synthesis Adsorption Kinetic modeling Equilibrium Regeneration
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基于Box-Behnken法优选红细胞膜包裹的紫杉醇仿生纳米混悬剂处方 被引量:3
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作者 范月月 崔曰新 +3 位作者 郝文艳 陈梦雨 杨阳 高春生 《中国中药杂志》 CAS CSCD 北大核心 2022年第9期2457-2464,共8页
基于红细胞的长循环及天然免疫逃逸效应,该研究构建了一种新型的红细胞膜包裹的紫杉醇仿生纳米混悬液[RBC-(PTX)NS],对其理化性质及体外抗肿瘤效果进行考察。采用超声-沉淀法制备紫杉醇纳米混悬液[(PTX)NS]及超声包膜法制备RBC-(PTX)NS... 基于红细胞的长循环及天然免疫逃逸效应,该研究构建了一种新型的红细胞膜包裹的紫杉醇仿生纳米混悬液[RBC-(PTX)NS],对其理化性质及体外抗肿瘤效果进行考察。采用超声-沉淀法制备紫杉醇纳米混悬液[(PTX)NS]及超声包膜法制备RBC-(PTX)NS。以粒径、电位、稳定性为指标,通过Box-Behnken法对(PTX)NS进行处方优化。并进一步对(PTX)NS及RBC-(PTX)NS的形态、粒径、稳定性、体外溶出及体外抗肿瘤特性进行表征。结果表明,优化所得的(PTX)NS粒径为(129.38±0.92)nm,Zeta电位(-22.41±0.48)mV;包裹细胞膜后RBC-(PTX)NS粒径为(142.5±0.68)nm,Zeta电位(-29.85±0.53)mV;透射电镜下(PTX)NS呈球形,RBC-(PTX)NS具有明显的核-壳结构;RBC-(PTX)NS在4℃下5 d保持稳定;体外溶出实验显示(PTX)NS在20 min内累积溶出度达79%,显著优于原料药溶出度(25%)(P<0.05);MTT细胞实验结果表明RBC-(PTX)NS对HepG2细胞的增殖有高效抑制作用,且具有明显的剂量依赖性。该研究探索制备的细胞膜仿生纳米制剂方法简单、重复性好,改善了PTX的溶解度,红细胞膜包裹后,RBC-(PTX)NS的稳定性提高,细胞毒作用增强,有望为PTX的纳米化给药提供新思路。 展开更多
关键词 紫杉醇 纳米混悬液 超声-沉淀法 Box-Behnken法 红细胞膜
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甘草黄酮纳米结晶的制备与评价 被引量:6
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作者 马妍妮 王涛 +1 位作者 张文萍 王文苹 《中国医院药学杂志》 CAS CSCD 北大核心 2016年第10期795-798,共4页
目的:优选甘草黄酮纳米结晶的制备工艺并对所得纳晶进行初步评价。方法:以超声辅助-反溶剂沉淀法制备纳米混悬液,采用正交试验L9(34),考察药物浓度、药物与表面活性剂的质量比、注入速度、超声时间对纳晶粒径及其分布的影响,并进一步优... 目的:优选甘草黄酮纳米结晶的制备工艺并对所得纳晶进行初步评价。方法:以超声辅助-反溶剂沉淀法制备纳米混悬液,采用正交试验L9(34),考察药物浓度、药物与表面活性剂的质量比、注入速度、超声时间对纳晶粒径及其分布的影响,并进一步优选稳定剂及冻干保护剂;比较所得纳晶与原药的平衡溶解度和体外溶出度。结果:最优处方工艺为:药物浓度20 mg·mL^(-1),稳定剂为10 mg·mL^(-1) SDS、5 mg·mL^(-1)PEG-400、0.2%PVA,注入速度0.5 mL·min-1,超声7 min,加入5%乳糖作为冻干保护剂;此条件下制得纳晶冻干前后粒径分别为(61.70±1.40)nm和(108.9±1.67)nm,呈电中性、粒径较均匀;冻干粉载药量31.04%,原料药和纳晶在pH6.8 PBS中的溶解度分别为3.41 mg·mL^(-1)和7.37 mg·mL^(-1),2 min时溶出率为8.33%和55.91%。结论:该纳米结晶制备工艺简便易行,可显著改善甘草黄酮的溶解度和溶出度。 展开更多
关键词 甘草黄酮 纳米结晶 超声-沉淀法 表征评价
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