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1)  SnO2-ZnO
二氧化锡-氧化锌
2)  SnO_2
二氧化锡
1.
The Study of Preparing Nanocrystalline SnO_2 by Sol-gel Method;
溶胶-凝胶法制备纳米二氧化锡的研究
2.
AFM characterization and gas sensitivity of SnO_2 thin films;
二氧化锡纳米薄膜的AFM研究与气敏性能测试
3.
Preparation of SnO_2 Nanometer Crystallites and Study of the Optical Propertier of Their Exciton States;
纳米材料二氧化锡的制备和激子态光学特性研究
3)  tin oxide
二氧化锡
1.
Synthesis of antimony-doped tin oxide nanoparticles by complexing-hydrothermal oxidation method;
配合-水热氧化法合成锑掺杂二氧化锡纳米粉末
2.
The mesoporous carbon supported nanocrystalline tin oxide composite(denoted as CMK-3-SnO2) is prepared by impregnating SnCl4 in ethanol in mesoporous carbon support,which is obtained from mesoporous SiO2 SBA-15 template using sucrose as the carbon source.
利用介孔氧化硅分子筛SBA-15作为硬模板、蔗糖作为碳源制备介孔碳CMK-3,并用浸渍法负载纳米晶二氧化锡得到复合超电容材料CMK-3-SnO2。
3.
Antimony doped tin oxide(ATO) and Indium tin oxide (ITO) thin films have been prepared by a sol-gel process using inorganic metal salts as precursors.
本文以无机盐为出发原料,采用溶胶—凝胶法制备了光学和电学性能较为优良的掺锑二氧化锡(ATO)薄膜和掺锡氧化铟(ITO)薄膜,进一步研究了热处理气氛、温度、时间、掺杂量对薄膜电学及光学性能的影响。
4)  SnO2
二氧化锡
1.
Preparation and microstructural Characterization of Surface Modified Nanosized SnO2 Particles;
表面修饰的二氧化锡纳米粒子的制备及微结构表征
2.
Sb-doped SnO2/Ti electrode was prepared by thermal decomposition method,the surface characterization of the electrodes was studied by SEM and the element composition of layers was analyzed with XRD.
采用热分解法制备了钛基二氧化锡电极,并用XRD,SEM对电极涂层进行了表征,应用快速电极寿命法测试了钛基二氧化锡电极在60℃,1。
3.
The titanium electrode was coated with SnO2 using thermal decomposition method and the microstructures and physical properties of the SnO2 coatings doped with other elements were characterized using various techniques.
结果表明:普通热分解方法可制备纳米二氧化锡涂层,其晶体结构为金红石结构;热氧化为500℃时,往Ti/SnO2涂层中添加Ru、Co能显著提高Ti/SnO2涂层的电催化性能,而添加La则无作用;制备的Ti/SnRuCo涂层,具有结合强度高、电催化性能好和孔隙率小的特点。
5)  Stannic oxide
二氧化锡
1.
The influence of metallic oxides,such as ferric oxide,stannic oxide and their complexes on the hot air aging property of onepack RTV fluorosilicone rubber(FR1) was studied.
研究了金属氧化物(二氧化锡、三氧化二铁和铁锡氧化物复合物)对单组分缩合型室温硫化氟硅橡胶(FR1)耐热空气老化性能的影响。
2.
Nanosized stannic oxide powders were prepared by sol-gel method.
采用溶胶-凝胶法制得了二氧化锡干凝胶粉体,并在不同温度下热处理后得到不同粒径的二氧化锡纳米级超微粉,采用热重法和差热分析、X-射线粉末衍射、透射电镜等方法观察了不同温度热处理后纳米粉体的粒径、形貌、聚集状态等的变化。
6)  tin dioxide
二氧化锡
1.
Preparation and characterization of tin dioxide powder;
二氧化锡粉体材料的制备及表征
2.
Aspirin synthesis by nanopowder tin dioxide catalyst;
二氧化锡纳米粉催化生成乙酰水杨酸
3.
Preparation and Scientific Research of Low-Resistivity and High-Density Tin Dioxide Ceramic;
低电阻、高致密二氧化锡陶瓷的制备与科学研究
补充资料:二氧化锡
SnO   分子量150.69
    性状  白色至微灰色粉末。密度6.95g/cm3。熔点1127℃。1800-1900℃升华。溶于硫酸、热浓盐酸,微溶于氢氧化钠或氢氧化钾溶液,不溶于水、醇、氨水和冷酸。与热浓的氢氧化钠、氢氧化钾共熔能生成锡酸钠。与硝酸不起作用。
    应用领域  无机工业用于锡盐制造。颜料工业中与铬酸盐、石灰、钒、氯等不同配合,可得扔红色、米黄色、黄色、紫金色等不问颜色,作为陶瓷、搪瓷的着色剂。玻璃工业用作玻璃磨光剂,以及用于制造不透明玻璃、乳白玻璃等。印染工业用作织物的媒染剂和增重剂。还用作分拆化学试剂,钢和大理石的磨光剂,有机合成催化剂等。此外,用于制造搪瓷、电磁材料。
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