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- Mass-production of cubic hollow ZnS microspheres was successfully realized by facile hydrothermal route. 采用水热法制备出高产量的硫化锌空心球。
- ZnS microsphere 硫化锌微球
- Dyskinesia was not increased in ZNS groups. 运动障碍的出现在ZNS组中并未增加。
- Meanwhile,the morphology of ZnS:Cu,Au was analyzed by SEM. 同时;用扫描电子显微镜(SEM)对ZnS:Cu;Au颗粒进行了尺寸和形貌表征.
- Analyses were given to the optical and EPR spectrum of ZnS:Cr~(2+). 本文通过对ZnS:Cr~(2+)晶体光学吸收谱及EPR谱的观测资料的分析,发现Cr~(2+)杂质的有效晶场并非常所认为的四硫配位四面体结构。
- Optical instability in ZnS optical bistable devices[J]. 引用该论文 王瑞波;李淳飞;张雷.
- Optical full adder composed of a ZnS interference filter[J]. 引用该论文 查子忠;王瑞波;张雷;李淳飞.
- Research of multi-logical optical bistable ZnS devices[J]. 引用该论文 曹明翠;刘夏安;游立德;李幼平.
- Glass microsphere was added to a acrylic latex coating in this study. 以丙烯酸乳液为基料,空心玻珠为填料,研制得到一种保温涂料。
- The microsphere covered with copper film has very good conductivity. 微球本身具有很好的导电性。
- Design and Deposition of Broadband IR Antireflection Coatings on ZnS Lenses[J]. 引用该论文 于天燕;朱福荣;刘定权;张凤山.
- Upconvcrsion Luminescence from Er3+Doped ZnS Pumped by a 960 nm Laser Diode[J]. 引用该论文 侯延冰;陈晓波;张光寅;徐叙瑢;华玉林;娄志东.
- CdTe film HgCdTe infrared focal plane array device surface passivation ZnS. 标 签 CdTe薄膜 HgCdTe红外焦平面 器件表面钝化 ZnS.
- Antireflective films optimization of ZnS ceramics infrared windows[J]. 引用该论文 Lin Li;Lianhe Dong;Liangzhao Huang.
- The release rate of As2O3 albumin microsphere is 9.22 times faster than that of As2O3 albumin microsphere CAC. 单纯As_2O_3白蛋白微球缓释是AS_2O_3微球与CPC复合后释药速度的9.;22倍。
- AIM:To prepare ophiopogonin enteric microsphere and to carry out the comprehensive evaluation. 目的:制备麦冬皂苷肠溶微球,建立综合评价方法。
- Carboxylic crosslinked polystyrene microsphere was prepared by F-C acylation reaction. 通过傅克酰基化反应制备了羧基化交联聚苯乙烯微球。
- The alidated mathematical model can be used to predict small-molecule drug release from PLG microsphere population. 对于多元分散体(分散参数<3)结合微球大小的数学模型比只用平均粒径更与试验结果相符。
- Adsorption effects of magnetic chitosan microsphere on protein of soy whey waste water were studied in this paper. 采用磁性壳聚糖微球吸附的方法吸附大豆乳清废水中蛋白质。
- FDDS can be divided into two forms: single-unit system and multiple-unit system (e.g. pellet, microsphere etc.). 按药物剂量的分配方式,胃漂浮给药系统可分为“一单元”和“多单元”给药系统(如微丸、微球等)。