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1)  tin oxide
氧化锡
1.
Mesoporous tin oxide synthesized by molecular template;
分子模板法合成介孔氧化锡
2.
Synthesis and property study of nanosize tin oxide particles byreverse microemulsions;
反相微乳液方法制备氧化锡纳米粒子及其性能研究
3.
Monodispersed antimony-doped tin oxide(ATO) conductive nanoparticles were synthesized by directly hydrothermal method at 260 ℃ from the starting materials tin oxalate and tartrated antimony.
以草酸亚锡和酒石酸锑钾为原料,在260℃用高温水热法一步合成具有纳米结构单分散性的锑掺杂氧化锡纳米导电粉体。
2)  SnO_2
氧化锡
1.
The Synthesis and Characterization of SnO_2 Nano-Wires;
氧化锡纳米线的合成与表征
2.
Preparation of nanosized SnO_2 gas sensitive materialsby means of microwave hydrolysis;
微波水解法制备纳米氧化锡气敏材料
3.
Anode material SnO_2 and its modification of Li-ion battery;
锂离子电池负极材料氧化锡及其改性
3)  SnO2
氧化锡
1.
SnO2 was used as anode additive in lead-acid batteries.
使用二氧化锡作为铅酸蓄电池正极添加剂,对空白试样和含添加物的正极材料进行了研究,以自制的小型电池通过恒流放电,考察了不同含量氧化锡对铅酸电池的影响。
2.
Single ciystal ZnO nanobelts and SnO2 nanowires were synthesized on stainless steel meshes by vapor transport process.
本文以不锈钢网为衬底,采用汽相传输法,制备高质量的单晶氧化锌纳米带和氧化锡线。
3.
Nanocrystalline SnO2 particles with dimensions ranging from 3.
8nm的氧化锡纳米粉,并通过掺杂稀土离子铈研究了氧缺陷引起的氧化锡纳米粉的发光性质,发现当引入了掺杂离子后可以大大增强其发光强度,并对其发光机理进行了讨论。
4)  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;
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
5)  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。
6)  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。
补充资料:氧化锡
      包括一氧化锡 SnO和二氧化锡 SnO2两种。一氧化锡为黑色立方晶体;密度6.446克/厘米3(0°C);不溶于水,易溶于酸。二氧化锡为锡石的主要成分,白色四方晶体;熔点 1630°C,1800~1900°C升华,密度 6.95克/厘米3;不溶于水,较难溶于酸,在浓硫酸中长期加热能溶解。一氧化锡在空气中加热容易氧化成二氧化锡,隔绝空气加热会发生歧化反应:
  4SnO─→Sn3O4+Sn一氧化锡较难溶于浓强碱溶液,产物有明显的还原性。二氧化锡对空气和热都稳定,与强碱共熔生成可溶性锡酸盐。
  
  一氧化锡可由锡(Ⅱ)盐溶液与强碱共热来制取。二氧化锡可由金属锡在空气中加热或者溶于浓硝酸后加热脱水来制取。二氧化锡是制备金属锡和媒染剂三水合锡酸钠的原料,也可用于制作各种瓷釉和珐琅,也可做玻璃的磨料。
  

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