Silver oxide
- 网络氧化银
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Photoelectrochemical studies of silver oxide electrodes in zinc - silver oxide battery
锌银电池中氧化银电极的光电化学研究
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The existence of nano-scale silver oxide grains smaller than 30 nm were demonstrated by SEM .
SEM表明薄膜中的氧化银纳米颗粒尺寸均小于30nm。
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A Study of the Fractal of Silver Oxide Films
银氧化膜的分形研究
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Silver oxide in the glass industry for the coloring agent .
氧化银在玻璃工业中用作着色剂。
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Material optimization of the reservoir in automatically activated zinc silver oxide primary battery
自动激活锌-银储备电池用泡囊材料优选
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Influence factors on nano-sized silver oxide prepared by liquid deposition method with orthogonal Experiments
液相沉淀法制备纳米AgO粉体影响因素的正交分析
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Surface Enhanced Raman Scattering Spectra of Phytic Acid in the Sol Silver Oxide
植酸在氧化银溶胶中的表面增强拉曼光谱
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Electrochemical Behavior and Reduction Mechanism of High Valence Silver Oxide Ag_3O_4 in Alkaline Solution
碱性溶液中高价态银氧化物Ag3O4的电化学性质及反应机理研究
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Preparation of Silyl Enol Ethers from Flavanone and Their Reaction with Silver Oxide
黄烷酮烯醇硅醚的合成及其与氧化银反应
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A colloidal preparation of protein ( albumin or gelatin ) and silver oxide ; used in aqueous solution as an antibacterial agent .
蛋白质(白蛋白或凝胶)和氧化银的胶状制剂,用于水成溶液中作抗菌剂。
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In this paper , we 've prepared manganese and silver oxide catalysts in some way and studied their catalytic performance for decomposition of high concentration ozone under high humidity condition .
本论文用几种方法制备了含锰和银的臭氧分解催化剂,并考察了它们在高湿度条件下(相对湿度95%)对高浓度臭氧(浓度>20mg/m~3)的催化分解活性。
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The silver oxide catalytic oxidation of furfurol in manufacturing furoic acid was improved . The yield was increased from 44.3 % ~ 51.7 % to 78.7 % .
改进了以氧化银为催化剂氧化呋喃甲醛制备呋喃甲酸的方法,产率由原来的44.3%~51.7%提高到78.7%。
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The oxides of base metal such as copper , lead 、 bismuth can be dissolved in the solution to generate double metals alkoxide accordingly while the silver oxide is reduced into silver .
氧化铜、氧化铋、氧化铅也能反应生成双金属醇盐,而氧化态的银被还原生成金属银。
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The adverse influence of aluminates formed during the Al / AgO battery discharge on the silver oxide positive and aluminium negative electrodes was presented . But they had greater effect on the aluminium negative electrodes .
Al/AgO电池放电过程中产生铝酸盐,它对AgO正极和铝负极均有不利影响,但对铝负极影响更大。
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The probability distribution function for the life of the button type zinc silver oxide cells is a normal distribution based on the statistical data obtained from the discharge time of 194 pieces of cells under 2k Ω constant resistance discharge .
本文根据194只扣式锌/氧化银电池在2kΩ恒电阻条件下放电时间(寿命)的统计结果,导出了该电池寿命的概率分布是服从正态分布规律的。
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The electrochemical properties of high-valence silver oxide Ag_ ( 3 ) O_ ( 4 ) in alkaline solution were investigated for the first time and the reduction mechanism of Ag_ ( 3 ) O_ ( 4 ) was proposed .
首次研究高价银氧化物Ag3O4(可看作为由Ag(Ⅲ)和Ag(Ⅱ)组成)在碱性水溶液中的电化学性质和反应机理。
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Study of Service Performance of Silver Metal Oxide Contact Material
银金属氧化物触点材料电气性能研究
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Heavy duty silver metal oxide composition contacts ensure long electrical endurance .
银金属氧化物触点实现高的电寿命次数。
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Silver metal oxide Arc Contact material ;
银金属氧化物;电弧;触头材料;
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Reactive Synthesis Criterion for Silver Copper Oxide Composites
银氧化铜复合材料的反应合成判据
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Investigation of Electrical Conductivity of Silver Tin Oxide Electrical Contact Materials Fabricated by Reactive Synthesis
反应合成银氧化锡电接触材料导电性能研究
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Preparation of Stable Silver (ⅱ) Oxide
稳定性氧化银(Ⅱ)的制备
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Investigation on the Particles ' Diameter Effect Factors of Preparation of the Multiplex Nanometer Silver (ⅰ、ⅱ) Oxide
纳米复合氧化高银(Ⅰ、Ⅱ)粉体制备中粒度的影响因素
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Investigation on Selecting Dispersing Agent in Preparation of the Multiplex Nanometer Silver (ⅰ,ⅱ) Oxide
纳米复合氧化高银制备中分散剂筛选研究
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Optical and Thermal Decomposition Performance for nano-sized Silver (ⅰ,ⅲ) oxide Prepared by Chemical Deposition Method with Orthogonal Experiments
纳米Ag(Ⅰ,Ⅲ)O粉体化学沉淀法制备条件的正交试验及其光学热分解性能研究
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The main factors were presented which affected the electric properties of the silver tin oxide contact ma-terials .
指出了影响银氧化锡触头材料电性能的主要因素。
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Silver tin oxide is the most promising non-toxic material to substitute silver cadmium oxide .
银氧化锡是最有希望代替银氧化镉材料的无毒触头材料。
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A new explanation to the cathodic process of silver (ⅱ) oxide with the concept of semiconductor high-low junction
用半导体高-低结概念对氧化银(Ⅱ)阴极过程所作的一种新解释
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Thirdly , the stability of the interface in silver copper oxide was simulated , calculated and analyzed by the first-principles .
最后,采用第一性原理对反应合成后银氧化铜界面的稳定性进行了模拟计算与分析。
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Dispersing agent is one of the most important factors , which can control particles ' size and prepare the multiplex nanometer silver (ⅰ,ⅱ) oxide .
在纳米复合氧化高银杀菌粉体的制备中,分散剂是控制微粒粒度处于纳米范围最关键的因素之一。