1)activated carbon nano-particles纳米活性炭
1.Methods: Mice were injected intravenously and intraperitoneally with the activated carbon nano-particles,and dissected at different time points after injection.目的:观察纳米活性炭在腹腔及机体各脏器中的分布。
英文短句/例句
1.Studies on the Tracking Nano-carbon and Drug-loaded Nano-activated Carbon Particles;示踪纳米炭和载药纳米活性炭制剂的研究
2.Study on the Effects of Activated Carbon Nano-particles to Enhance Anti-hepatocarcinoma Drugs Selectivity;纳米活性炭增强抗肝癌药物选择性的研究
3.Effects of Actived Carbon Nano-particles on the Anti-cancer Action of DDP;纳米活性炭对顺铂抗肿瘤作用影响的实验研究
4.Study on the Microwave Absorbing Property of Carbon Nanotubes/active Carbon by Electroless Plating;化学镀碳纳米管/活性炭的微波吸收性能研究
5.Study on Photocatalytic Degradation of Phenol Solution with Nanometer TiO_2 Photocatalyst Coated on Activited Carbon;活性炭负载纳米TiO_2光催化降解苯酚的研究
6.Effects of activated carbon nanoparticles on anticancer effect of 5-Fu活性炭纳米粒子对5-Fu抗肿瘤作用的影响
7.Kinetics of photocatalytic degradation of humic acid by nano-TiO_2 loaded on granular activated carbon活性炭负载纳米TiO_2对腐殖酸光催化降解动力学
8.Growth of Carbon Nanofibers on Activated Carbon by Thermal CVD Method活性炭上化学气相沉积法生长纳米碳纤维
9.Study on photocatalytic degradation of activated carbon-loaded nanometer titanium dioxide to formaldehyde wastewater活性炭负载纳米TiO_2光催化降解甲醛废水研究
10.Preparation of new gelatin-based activated carbon with carbon nanotubes as framework新型明胶基碳纳米管骨架活性炭的制备
11.Photocatalytic Degradation of Formaldehyde by a Combination of TiO_2 and Activated Carbon Fibers纳米TiO_2与活性炭纤维复合降解空气中甲醛
12.Study of Fluoride Ion Removal Using Modified Activated Carbon/Nano-scale Aluminum Oxide Hydroxide改性活性炭/纳米羟基氧化铝对水中氟离子的去除研究
13.The pHarmacology and the Mechanism of Action of Activated Carbon Nanoparticles Adsorbing 5Fu;活性炭纳米粒子对5Fu药理作用的影响及部分作用机制研究
14.Advanced Development and Primary Empirical Study of Hollow Active Carbon Fiber-Nanometer Silver Combine Dressing中空活性炭纤维—纳米银复合敷料的研制及初步实验研究
15.Photocatalytic degradation of Organic pollution indoor air by TiO_2 Loaded activated carbon fibers活性炭纤维负载纳米TiO_2降解室内空气中有机污染物
16.Preparation of Carbon Nanotubes/Activated Carbon Composite Microspheres and Their Application to Adsorption of VB_(12)碳纳米管/活性炭复合微球的制备及其对VB_(12)的吸附应用
17.Effects of activated carbon nanoparticles on human gastric carcinoma cell line BGC-823 in vitro活性炭纳米粒子对人胃癌BGC-823细胞作用的体外实验研究
18.Studies on Decoloration of Methyl Orange by Active Carbon Supported Chitosan/Nano-CdS Composite Particle活性炭负载壳聚糖/纳米CdS复合粒子对甲基橙的脱色作用
相关短句/例句
Carbon nanoparticles纳米活性炭
1.Conclusions:Carbon nanoparticles suspension injection can dye and trace the lymphonode drain around stomach,which has guide role in laparoscopic radical gastrectomy.目的:应用纳米活性炭注射在胃癌周边组织对淋巴结进行染色、示踪,从而在胃癌根治术中系统地清扫第二站淋巴结,探讨腹腔镜胃癌根治术中清扫淋巴结的方法及其效果。
3)activated carbon nano fiber纳米活性炭纤维
1.The main properties,processes of producing and optimum conditions and new development of activated carbon nano fiber described and theirstatus quo and development tendency at home and abroad have been presented and for future development of application and marked demand are evaluated.介绍了纳米活性炭纤维的性能、生产的主要技术路线与最佳的操作条件及有关进展情况。
4)activated carbon nanoparticles活性炭纳米粒
1.Guidance of activated carbon nanoparticles in gastric cancer lymphadenectomy;活性炭纳米粒对胃癌淋巴清扫的指导作用
5)activated carbon nanofiber活性炭纳米纤维
1.Preparation of PAN-based activated carbon nanofiber and study on its adsorbability to gold;PAN基活性炭纳米纤维的制备及其对金的吸附研究
6)activated carbon nanoparticles活性炭纳米粒子
1.Effects of activated carbon nanoparticles on anticancer effect of 5-Fu活性炭纳米粒子对5-Fu抗肿瘤作用的影响
2.Effects of activated carbon nanoparticles on human gastric carcinoma cell line BGC-823 in vitro活性炭纳米粒子对人胃癌BGC-823细胞作用的体外实验研究
延伸阅读
看纺织印染中应用纳米材料和纳米技术纺织印染中应用纳米材料和纳米技术时,除了要解决纳米材料的制备技术之外,重要的是要解决好纳米材料的应用技术,其中关键问题是使纳米粒子和纺织印染材料的基本成分(即聚合物材料)之间处于适当的结合状态。印染中,纳米粒子在聚合物基体中的分散和纳米粒子在聚合物表面的结合是主要的应用技术问题。 制备聚合物/无机纳米复合材料的直接分散法,适用于各种形态的纳米粒子。印染中纳米粒子的使用一般采用直接分散法。但是由于纳米粒子存在很大的界面自由能,粒子极易自发团聚,利用常规的共混方法不能消除无机纳米粒子与聚合物基体之间的高界面能差。因此,要将无机纳米粒子直接分散于有机基质中制备聚合物纳米复合材料,必须通过必要的化学预分散和物理机械分散打开纳米粒子团聚体,将其均匀分散到聚合物基体材料中并与基体材料有良好的亲和性。直接分散法可通过以下途径完成分散和复合过程: 高分子溶液(或乳液)共混:首先将聚合物基体溶解于适当的溶剂中制成溶液(或乳液),然后加入无机纳米粒子,利用超声波分散或其他方法将纳米粒子均匀分散在溶液(或乳液)中。有人将环氧树脂溶于丙酮后加入经偶联剂处理过的纳米TiO2,搅拌均匀,再加入 40wt%的聚酰胺后固化制得了环氧树脂/TiO2纳米复合材料。还有人将纳米SiO2粒子用硅烷偶联剂处理后,改性不饱和聚酯。 熔融共混:将纳米无机粒子与聚合物基体在密炼机、双螺杆等混炼机械上熔融共混。如将PMMA和纳米SiO2粒子熔融共混后,双螺杆造粒制得纳米复合材料。又如利用偶联剂超声作用下处理纳米载银无机抗菌剂粒子,分散制得PP/抗菌剂、PET/抗菌剂、PA/抗菌剂等复合树脂,然后经熔融纺丝工艺加工成抗菌纤维。研究表明,将经过表面处理的纳米抗菌剂粒子通过双螺杆挤出机熔融混炼,在聚合物中可以达到纳米尺度分散,获得了具有良好综合性能的纳米抗菌纤维,对大肠杆菌、金黄色葡萄球菌的抗菌率达到95%以上(美国AATCC-100标准)。 机械共混:将偶联剂稀释后与碳纳米管混合,再与超高分子量聚乙烯(UHMWPE)混合放入三头研磨机中研磨两小时以上。将研磨混合物放入模具,热压,制得功能型纳米复合材料。 聚合法:利用纳米SiO2粒子填充(Poly(HEMA))制备了纳米复合材料。纳米SiO2粒子首先被羟乙基甲基丙烯酸(HEMA)功能化,然后与HEMA单体在悬浮体系中聚合。还有利用SiO2胶体表面带酸性,加入碱性单体4-乙烯基吡咯进行自由基聚合制得包覆型纳米复合材料。
