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1)  hollow submicrosphere
中空亚微球
1.
SEM and TEM images show that the reduced products are hollow Cu2O submicrospheres with regular morphology and controlled size,and confirm that the hollow submicrospheres are composed of primary Cu2O nanocrystals with diameters of ca.
0)℃条件下反应55min得到橙色Cu2O溶胶,离心分离产物经XRD鉴定为Cu2O立方晶系晶体;SEM和TEM表明该法获得的晶体为形状规整、粒径分布窄的Cu2O中空亚微球,并证实系由大量10nm量级的原级Cu2O纳米晶粒组装而成。
2)  hollow microsphere
中空微球
1.
Calcium molybdate (CaMoO4) hollow microspheres were fabricated via a facile liquid-phase route in 1-n-butyl-3-methyl imidazolium bromide ionic liquid ([BMIM]Br)/water at room temperature.
以1-正丁基-3-甲基咪唑溴盐离子液体([BMIM]Br)/水体系为反应介质,利用简便的液相沉淀法在室温下合成了钼酸钙(CaMoO4)中空微球体材料。
2.
The effective thermal conductivity(k_(eff)) of hollow microsphere-filled polypropylene(PP) composite was measured by using a thermal conductivity instrument,and the equation of effective thermal conductivity published in the previous paper was preliminarily verified.
应用导热系数测量仪,测量了中空微球填充聚丙烯复合材料的等效导热系数(keff),并对前期研究中所得到的等效导热系数公式进行了初步验证。
3.
The synthesis and performance of hollow microsphere,expended microsphere and crosslinked microsphere are introduced in this paper.
介绍了聚合物微球中的中空微球、可膨胀微球和交联微球的合成方法及基本性能,同时介绍了这些微球作为有机填料在皮革涂饰中的应用。
3)  hollow microspheres
中空微球
1.
New progress of floating drug delivery systems hollow microspheres;
漂浮药物传递系统的新进展——中空微球
2.
Preparation and Characterization of Composite Al_2O_3-SiO_2 Hollow Microspheres
Al_2O_3-SiO_2复合中空微球的制备与表征
3.
OBJECTIVE The study involves preparation and evaluation of hollow microspheres with ranitidine hydrochloride(RH) as a model drug.
目的:以盐酸雷尼替丁(RH)为模型药物,研究中空微球的制备,并对制备过程中的影响因素进行考察。
4)  hollow submicrospheres
亚微空心球
5)  microballoon sphere
中空微型球
6)  TiO_2 hollow spheres
TiO_2中空微球
1.
The photoluminescence and field emission properties of ZnO products are investigated,and we simply studied TiO_2 hollow spheres at last.
文章的最后我们还对TiO_2中空微球进行了简单的研究。
补充资料:可降解淀粉微球和生物降解白蛋白微球阻滞法


可降解淀粉微球和生物降解白蛋白微球阻滞法


介入放射学技术。介入性局部化疗之前,把二者注入靶动脉,可暂时减少动脉血流,再行化疗药物灌注,以减少血液冲刷,保持局部化疗药物浓度的技术。与其他中期和长期栓塞微球不同,DSM和BAM仅造成数十分钟的血流量减少,待其被降解后血流可恢复至以前水平。
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