量子点与生物大分子的连接方式主要有共价耦联结合和静电吸附作用两种。
The two main methods of the connection between QDs and biological molecules are covalent coupling and electrostatic adsorption.
利用自组装技术和静电吸附作用,基于电化学技术,设计建立了几种新型生物传感器技术。
Several new bio-sensor technologies based on electrochemical technology were established by self-assembly and electrostatic adsorption.
实验表明,这种吸附是因静电力的作用而产生的。
It was proved that the adsorption is produced by the static electric force.
而对于具有较高等电点的血红蛋白和溶菌酶的吸附动力学,却几乎不受静电排阻作用的影响。
While for the adsorption kinetics of Hb and lysozyme which with higher isoelectric points, little electrostatic hindrance effects were suffered.
吸附机理是多孔物质吸附和静电共同作用的过程。
The mechanism of adsorption process is a correlative adsorption result between the porous substance and static function.
但吸附带负电荷的荧光素后,其表面等离子体共振几乎不受影响,这可能与粒子之间的静电作用有关。
Negatively charged FL, on the other hand, had slight influence on the SPR of the gold nanoparticles, likely due to the electrostatic repulsion between FL and citrates.
DNA在红壤胶体和矿物表面通过静电力作用吸附的比例较低,仅为10—20%。
Only 10-20% DNA was adsorbed by electrostatic forces on soil colloids and minerals.
颗粒受静电作用被吸附而停留在阴极表面上;
The particles are adsorbed by interaction of static electricity, Thus settling on the cathode surface.
是带电的灰尘在静电力的作用下吸附到另一端的壁上。
To show how to take away the dust. The electrostatic force act on the dust which has charge, the dust will float to the other side.
混合模式吸附层析是一种新型的生物分离方法,其功能配基兼有两种或两种以上的作用模式,主要为静电和疏水相互作用。
Mixed-mode chromatography is a new kind of chromatography technology for bioseparation. The special ligand combines two or more interaction modes, commonly hydrophobic and electrostatic interactions.
本发明静电除尘装置采用静电吸附尘埃,在高压作用下,除尘效率高,效果好。
The electrostatic precipitator provided by the invention adopts static electricity for dust absorption, and has high precipitation efficiency and good effect under the high voltage.
本发明静电除尘装置采用静电吸附尘埃,在高压作用下,除尘效率高,效果好。
The electrostatic precipitator provided by the invention adopts static electricity for dust absorption, and has high precipitation efficiency and good effect under the high voltage.
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