| 1. | " for his discoveries and investigations in surface chemistry 对表面化学的研究 |
| 2. | Surface chemistry analysis and surface modification of si3n4 powder 4粉体表面化学分析及表面改性 |
| 3. | Applied surface chemistry 应用表面化学 |
| 4. | Nitric acid has much more surface chemistry effects on the low modulus carbon fiber than high modulus one 硝酸氧化对低模量碳纤维的表面改性远比高模量碳纤维的大。 |
| 5. | Abstract : the surface chemistry of a high modulus and a low modulus carbon fiber , both before and after nitric acid oxidation , were studied by x - ray photoelectron spectroscopy ( xps ) and chemical derivatization 文摘:采用x光电子能谱( xps )及化学衍生法探讨了硝酸氧化前后的碳纤维表面化学的变化。 |
| 6. | The paper studied the process of adsorptive foam separation for the recovery of zn ( ii ) , cu ( ii ) in the solution by the guide of surface chemistry , coordination chemistry and chemical transfer theory 本文以表面化学、配位化学及化工传递原理为指导,对泡沫吸附分离和浓缩溶液中有价金属离子铜、锌的过程进行了研究和探索。 |
| 7. | The surface chemistry of anion - exchange fiber synthesized from natural cotton was also studied , in order to further understand the effect of surface functional groups of ion - exchange fibers on their adsorptive and exchange properties 还对天然棉纤维基离于交换纤维的表面化学进行了研究,以探讨离子交换纤维的表面官能团对吸附交换性能的影响。 |
| 8. | Iron oxide magnetic nanoparticles with biocompatibility and functional coatings via appropriate surface chemistry approaches have been used for immobilization of cells , proteins , enzymes , antibodies , oligonucleotides and drugs through covalent bonding or adsorption 氧化铁磁性纳米粒子通过表面化学修饰得到无机、有机或聚合物壳包覆在其表面。 |
| 9. | Iron oxide magnetic nanoparticles with biocompatibility and functional coatings via appropriate surface chemistry approaches have been used for immobilization of cells , proteins , enzymes , antibodies , oligonucleotides and drugs through covalent bonding or adsorption 摘要氧化铁磁性纳米粒子通过表面化学修饰得到无机、有机或聚合物壳包覆在其表面。 |
| 10. | To improve the performance of assays on the oligonucleotide microarray , the factors that influence the hybridization effects such as surface chemistry , probe size , spacer length , hybridization conditions etc were intensely studied and optimized 为改善寡核苷酸芯片的分析性能,对影响芯片杂交结果的因素,如片基表面的化学处理、探针的长度、间隔臂的长度、杂交条件等,进行了深入的研究和优化。 |