扩展材料表征的“工具箱”:认证辅料和药物活性成分(API)的供应资格
药用辅料的物理特性表征不仅是一项要求,还可以提供数据用于预测包括片剂、胶囊、吸入剂型、经皮给药等最终剂型的性能 […]
使用AutoPore压汞仪计算堆积密度和骨架密度
AutoPore 压汞法一般常用于测定样品的总孔体积,测试结果的精确度能够低于 1%。除此之外,压汞法还能够用 […]
锂离子电池隔膜孔结构的表征

AutoPore V采用压汞法,可用于锂离子电池隔膜和电极的表征。这种独特且有价值的技术可以为安全性、能量密度 […]
压汞法的连续加压 VS 步进加压
压汞法(Mercury intrusion porosimetry 简称 MIP),又称汞孔隙率法,是测定部分 […]
在您的压汞仪中使用正确的压入常数
When performing mercury porosimetry analyses, it is imp […]
Transient Data Collection Using the 3Flex
Understanding the rate of mass transfer of a guest spec […]
Lithium-ion Battery Separator: Pore Structure Determination Using Mercury Intrusion Porosimetry
Lithium-ion (Li-ion) batteries are an advanced energy s […]
Characterizing Li-ion Battery Separators: Pore Structure Determination
Lithium-ion (Li-ion) batteries are an advanced technolo […]
使用 AutoPore IV 系列孔隙度仪测定粒径的Mayer – Stowe方法
Theoretical models of mercury intrusion mechanisms allo […]
Unraveling Hierarchical Pore Networks Using Differential High-Resolution Mercury Intrusion
The void structure of porous materials used as catalyst […]