n. titanizing
本论文主要研究仿生钛化和自组装及其用于固定化酶载体设计与制备。
This study discusses biomimetic and self-assembly approach for the formation of titania-based materials and their potential application in the preparation of enzyme carriers.
显微组织分析表明,含钛钢中生成了钛化物相,并且随着退火温度的提高,钛化物析出量增多。
Analysis on the microstructure shows that precipitation of compound containing titanium was found in the steel, and its amount increases with the elevation of annealing temperature.
对仿生钛化过程机理及精蛋白在诱导合成氧化钛过程中的催化和模板双重作用进行了详细的阐述。
The catalyzing and templating function of protamine involved in the synthesis of the nanoparticle composite was discussed, and a mechanism was tentatively proposed.
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