1) spray pyrolysis
喷雾热分解
1.
Morphology control of micro-sized spherical silver powder prepared by spray pyrolysis;
喷雾热分解法制备超细银粉及其形貌控制
2.
Preparation of La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-α) ultra fine powder by spray pyrolysis method and its electrical property;
La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-α)超细粉体的喷雾热分解法合成与电性能
3.
Preparation and electric property of fluorine-doped tin oxide thin films by spray pyrolysis process;
喷雾热分解法制备SnO_2·F薄膜与导电性能研究
2) spray pyrolysis method
喷雾热分解法
1.
SnCl4·5H2O as raw material,SnO2 ultrafine particles were prepared by spray pyrolysis method.
5H2O为原料,采用喷雾热分解法制备超细SnO2粉体,结果表明,通过控制反应炉温、前驱体溶液浓度、载气流量,选择合适的添加剂可以有效调控粉体的粒度与形貌。
2.
With SnCl4·5H2O as precusor,SnO2 ultrafine particles were prepared by spray pyrolysis method.
5H2O为前驱体,采用喷雾热分解法制备了超细SnO2粉体,研究了反应温度、前驱体溶液浓度和载气流量等工艺参数对粉体粒径和形貌的影响,并对工艺参数进行了优化。
3) spray pyrolysis
喷雾热分解法
1.
This study used spray pyrolysis process to prepare Yb 2O 3 ultrafine powders.
在此基础上,以Yb(NO3)3·6H2O为前驱体采用喷雾热分解法制备出粒度为050~150μm的单相立方晶系球形Yb2O3粉末。
4) ultrasonic spray pyrolysis
超声喷雾热分解
1.
SnO_2 thin film by ultrasonic spray pyrolysis;
用超声喷雾热分解法制备二氧化锡薄膜
2.
Spherical morphology LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 as a cathode material of lithium ion batteries was successfully synthesized by an ultrasonic spray pyrolysis method.
采用超声喷雾热分解工艺合成了球形锂离子电池正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2。
3.
Ag doped ZnO films(ZnO:Ag) were deposited on quartz glass substrates by ultrasonic spray pyrolysis technology.
采用超声喷雾热分解法在石英衬底上以醋酸锌水溶液为前驱体,以硝酸银水溶液为Ag掺杂源生长了Ag掺杂ZnO(ZnO:Ag)薄膜。
5) Spray-pyrolysis
喷雾干燥-热分解
6) spin-coating spray pyrolysis
甩胶喷雾热分解
1.
The temperature of spin-coating spray pyrolysis for preparing films was determined by TG as 120℃.
配置羧酸铕配合物溶于二甲基亚砜中形成溶液,经TG确定甩胶喷雾热分解成膜温度为120℃,制备薄膜设备为自制,通过实验摸索各实验参数,成功制备了羧酸铕配合物光致发光薄膜。
补充资料:废塑料热分解
分子式:
CAS号:
性质:已是废塑料的一种化学回收技术,即将废塑料在隔绝空气条件下加热或水解,使高聚物裂解成低分子物质。如在催化剂作用裂解废塑料可得到汽油、煤油、柴油馏分及部分气体等。对PE,PP等塑料废弃物用此技术可方便地处理而对聚酯、聚碳酸酯等缩聚物可进行水解得到原料或中间体。
CAS号:
性质:已是废塑料的一种化学回收技术,即将废塑料在隔绝空气条件下加热或水解,使高聚物裂解成低分子物质。如在催化剂作用裂解废塑料可得到汽油、煤油、柴油馏分及部分气体等。对PE,PP等塑料废弃物用此技术可方便地处理而对聚酯、聚碳酸酯等缩聚物可进行水解得到原料或中间体。
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