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TiC_p/ZA—12复合材料凝固时TiC_p的行为 被引量:1
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作者 王香 李庆芬 曾松岩 《宇航材料工艺》 CAS CSCD 北大核心 2002年第4期23-27,共5页
利用XD法与搅拌铸造技术相结合的工艺制备TiCp/ZA— 12复合材料 ,采用常规凝固与定向凝固的技术研究增强粒子TiCp 在凝固界面的行为。结果表明 :常规凝固条件下 ,TiC含量较低时 ,颗粒主要分布于共晶相内 ,TiC含量较高时 ,颗粒不仅存在... 利用XD法与搅拌铸造技术相结合的工艺制备TiCp/ZA— 12复合材料 ,采用常规凝固与定向凝固的技术研究增强粒子TiCp 在凝固界面的行为。结果表明 :常规凝固条件下 ,TiC含量较低时 ,颗粒主要分布于共晶相内 ,TiC含量较高时 ,颗粒不仅存在于共晶相内 ,也存在初生相内 ;定向凝固条件下 ,由于初生相对TiC的排斥作用使TiCp/ZA— 12复合材料凝固组织中存在TiC聚集的带状组织。TiCp 在带状组织中的聚集程度与TiC含量有关 ,随TiCp 含量增加 ,聚集程度减小。当TiCp 含量超过 6 %后 ,聚集带已不明显。 展开更多
关键词 TiCp/ZA-12复合材料 TICP 常规凝固 定向凝固 聚集程序
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IgG and fibrinogen driven nanoparticle aggregation 被引量:3
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作者 Risto Cukalevski Silvia A. Ferreira +2 位作者 Christopher J. Dunning Tord Berggard Tommy Cedervall 《Nano Research》 SCIE EI CAS CSCD 2015年第8期2733-2743,共11页
A thorough understanding of how proteins induce nanoparticle (NP) aggregation is crucial when designing in vitro and in vivo assays and interpreting experimental results. This knowledge is also crucial when developi... A thorough understanding of how proteins induce nanoparticle (NP) aggregation is crucial when designing in vitro and in vivo assays and interpreting experimental results. This knowledge is also crucial when developing nano-applications and formulation for drug delivery systems. In this study, we found that extraction of immunoglobulin G (IgG) from cow serum results in lower polystyrene NPs aggregation. Moreover, addition of isolated IgG or fibrinogen to fetal cow serum enhanced this aggregation, thus demonstrating that these factors are major drivers of NP aggregation in serum. Counter-intuitively, NP aggregation was inversely dependent on protein concentration; i.e., low protein concentrations induced large aggregates, whereas high protein concentrations induced small aggregates. Protein-induced NP aggregation and aggregate size were monitored by absorbance at 400 nm and dynamic light scattering, respectively. Here, we propose a mechanism behind the protein concentration dependent aggregation; this mechanism involves the effects of multiple protein interactions on the NP surface, surface area limitations, aggregation kinetics, and the influence of other serum proteins. 展开更多
关键词 nanoparticles(NPs) PROTEIN coron AGGREGATION IMMUNOGLOBULIN
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