1) Ag+
Ag+
1.
The white carbon black was selected as carrier,and the inorganic antibacterial material was synthesized by supporting Ag++ on the carrier under certain condition.
采用白炭黑为载体,Ag++为抗菌离子,制得含Ag++杀菌活性成分的无机粉体抗菌材料。
2.
The kinetics on biosorption and desorption of metal ions(Au(2+),Ag++,Cu(2+) and Ni(2+)) by brown algae Laminaria japonica is discussed in this paper.
研究电镀废水中金属离子Au2+,Ag++,Cu2+,Ni2+在褐藻(Laminaria japonica)上的生物吸附-解吸动力学。
3.
Ag++ concentration and other chemistry components in the snow water are analyzed.
为搞清实施人工影响天气后,所用碘化银催化剂是否对环境造成污染这一问题,利用2002年12月至2003年3月在北京尖子山,使用碘化银地面发生器在人工增雨雪试验中,对4次人工降雪过程所采集雪水样品进行了Ag++测定及其他化学组分分析。
2) Ag+
银离子
1.
In order to get the fiber with antibacterial property,the metallic ion Ag++ with germicidal action was chelated to the modified PAN fiber by the chelated groups and bases.
对一种含银离子抗菌纤维的抗菌性能进行了研究。
3) Ag
Ag
1.
Fabrication of Ag+/C Coaxial Nanocables;
Ag/C同轴纳米电缆的制备
2.
The Preparation and Research of Al_2O_3/Ag+ Cermet;
Al_2O_3/Ag金属陶瓷的制备与研究
3.
Investigation for Chemisorption of Ag+ on Si(100) Surface;
Ag在Si(100)表面化学吸附特性研究
4) Ag
银
1.
The Preparation of Ag+ Loaded Nanotube Titanic Acid Catalyst;
负载银纳米管钛酸催化剂的制备
2.
Analysis of Optical Absorption Spectra of Ag+-Coated Au Composite Nanoparticles;
金芯-银壳复合纳米微粒光学吸收光谱分析
5) Ag~+
银离子
1.
Study on Adsorption Properties of Chitosan for Ag+~+;
壳聚糖对银离子的吸附性能研究
2.
The inorganic antibacterial compound was prepared using silicon sol as carrier with Ag+~+,TiO_2,ZnO and Al_2(SiO_3)_3 in this paper.
本文以硅溶胶为载体,通过负载金属银离子、TiO2、ZnO以及A l2(S iO3)3于硅溶胶中,制备了复合无机抗菌剂,并将其加入到胶衣树脂中制备了抗菌胶衣树脂。
3.
Among various antibacterial agents, chitosan and Ag+~+ are widely used.
在各中抗菌剂中,壳聚糖和银离子抗菌效果很好,而且具有广普、高效、安全的优点,但目前纺织上将两者复合的应用还很少,因此本论文中主要研究了壳聚糖-银复合抗菌整理剂制备及其对棉和丙纶非织造布的抗菌整理。
6) Ag~+
Ag+
1.
The kinetic and thermodynamic characteristics of adsorption of urushiol-salicylic acid resin were systematically studied for Ag+~+.
研究了漆酚-水杨酸吸附银离子(Ag+)的动力学和热力学特性。
2.
The result of molecular recognition test shows that this host molecular has strong complexation to Ag+~+.
利用紫外光谱法考察了该化合物对Ag+,Zn2+的识别性能。
3.
The nature of interaction between the S atom in protein of photographic gelatin and Ag+~+ was studied by XPS.
本文用该技术研究了照相明胶中S原子与Ag+相互作用的本质。
参考词条
AgⅡ
Ag-
Ag(Ⅰ)
Ag~+
Additive Ag(or Ag and Ni)
Ag-Ag Contact
Ag/Zn/Ag
Ag~(2+)
Ag content
Ag-doping
Ag+-Zeolite
Ag nanoparticles
类似作用
补充资料:acid fast yellow ag
CAS:6373-74-6
分子式:C18H14N4O7S·Na
中文名称:酸性橙3
英文名称:Benzenesulfonic acid, 5-[(2,4-dinitrophenyl)amino]-2-(phenylamino)-, monosodium salt
2-anilino-5-(2,4-dinitroanilino)-benzenesulfonic aci monosodium salt
acid fast yellow ag; acid fast yellow e5r; acid leather light brown g
分子式:C18H14N4O7S·Na
中文名称:酸性橙3
英文名称:Benzenesulfonic acid, 5-[(2,4-dinitrophenyl)amino]-2-(phenylamino)-, monosodium salt
2-anilino-5-(2,4-dinitroanilino)-benzenesulfonic aci monosodium salt
acid fast yellow ag; acid fast yellow e5r; acid leather light brown g
说明:补充资料仅用于学习参考,请勿用于其它任何用途。