1) SnO2 nanowires
SnO2纳米线
1.
SnO2 nanowires were successfully synthesized via thermal evaporation method at atmospheric pressure.
在常压条件下采用气相沉积方法制备出SnO2纳米线,X射线衍射和Raman光谱结果均表明制备出来的产物为金红石结构。
2) SnO2 nanowire arrays
SnO2纳米线阵列
1.
Highly ordered SnO2 nanowire arrays embedded in anodic alumina membranes (AAM) were synthesized by a simple sol-gel method.
用简单的溶胶-凝胶方法在多孔阳极氧化铝模板(AAM)的微孔中制备了高度有序的SnO2纳米线阵列。
2.
One way, highly ordered SnO2 nanowire arrays embedded in anodic alumina membranes (AAMs) were fabricated by sol-gel method, first SnO2 colloidal suspensions filled in the pores of AAMs, then annealed at 600℃for 10h.
以二次阳极氧化的多孔氧化铝薄膜为模板,一种以溶胶凝胶的方法,先将氧化锡溶胶灌入模板微孔中,在600℃烧结10 h得到有序的SnO2纳米线阵列;另一种,用电化学沉积的方法,先在模板微孔中沉积金属锡,然后在600℃高温下氧化10h得SnO2纳米线阵列。
3) nanometer SnO2
纳米SnO2
1.
The synthetic process and properties of nanometer SnO2 were studied by XRD、DTA/TG and SEM.
将超声波辐射应用于以四氯化锡(SnCl4·5H2O)为原料的沉淀法制备纳米SnO2粉体的工艺过程,制备了平均晶粒尺寸为20nm的SnO2粉体。
4) SnO_2 nanorods
SnO2纳米棒
1.
SnO_2 nanorods with rutile structure were prepared by calcining precursor powders.
在NaC l、KC l等熔盐介质中,在600~785℃对前驱物进行焙烧,前驱物纳米颗粒自组装生长形成SnO2纳米棒。
2.
SnO_2 nanorods doped Cd~ 2+ with the rutile structure were synthesied by calcinedating precursor powders, which were prepared by redox reaction of SnCl and CdCl mixture aqueous solution to KBH_4 aqueous solution in microemulsion in the presence of molten salt NaCl+KCl.
在微乳液中SnCl和CdCl的混合水溶液与KBH4水溶液的还原反应制备了Cd2+掺杂SnO2纳米棒前驱物。
3.
Synthesis of SnO_2 nanorods with the rutiles tructure by annealing precursor powders in molten salt.
利用微乳液法制备SnO2一维纳米材料前驱物,然后在NaCl,KCl熔盐中经710,785,900℃等温度焙烧2 h,成功地制备了金红石结构的SnO2纳米棒一维纳米材料,并用透射电子显微镜,X射线衍射对SnO2纳米棒的结构进行了表征。
5) nano-SnO_2
纳米SnO2
1.
The structure and properties of nano-SnO_2 were characterized by XRD,TEM and electrochemical test.
5H2O和NaOH为起始原料,用微波辅助固相法合成了纳米SnO2。
2.
The recent research on the nano-SnO_2 prepared by chemical precipitation method using the inorganic salts as source materials was described in this paper.
对近年来有关以无机盐为原料用化学沉淀法制备纳米SnO2材料的研究作综述,分析讨论了在制备纳米SnO2过程中,各主要因素对纳米SnO2材料制备的影响,简要地介绍了纳米SnO2材料的一些性能、用途。
3.
Controlling of Nano-SnO_2 Powder Agglomeration;
分析了纳米SnO2粉体团聚的形成机理,并从物理法和化学法两个方面分析归纳了控制纳米SnO2粉体团聚的方法。
6) nano-SnO2/ZnO
纳米SnO2/ZnO
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8
性质:暂无
制备方法:暂无
用途:用于轻、中度原发性高血压。
分子量:365.5
CAS号:26807-65-8
性质:暂无
制备方法:暂无
用途:用于轻、中度原发性高血压。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条