更重要的是,其表面电荷密度可以通过简单方式改变。
Moreover, the surface charge density of lipidic nanostructures can be varied in a simple manner.
随着硅片表面电荷密度增加,BSA吸附量增加。
As the surface charge density increased, the adsorbed BSA amount also increased.
不同浆种的纤维形态特征和表面电荷密度的差异可解释上述结果。
These results may be explained by the differences in morphology properties and surface charge densities of the pulps.
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