以山梨酸、La(NO_3)_3,Al(NO_3)_3,Mg(NO_3)_2和Na OH为主要原料合成了山梨酸插层镁铝镧类水滑石(Mg Al La-SA LDHs),通过X射线衍射(XRD)、红外光谱(FT-IR)进行结构表征。采用刚果红法、热老化烘箱法、转矩流变法、电导率法等研究了山...以山梨酸、La(NO_3)_3,Al(NO_3)_3,Mg(NO_3)_2和Na OH为主要原料合成了山梨酸插层镁铝镧类水滑石(Mg Al La-SA LDHs),通过X射线衍射(XRD)、红外光谱(FT-IR)进行结构表征。采用刚果红法、热老化烘箱法、转矩流变法、电导率法等研究了山梨酸插层类水滑石及与季戊四醇、硬脂酸锌复合后添加到聚氯乙烯(PVC)的热稳定性能。结果表明:山梨酸插层类水滑石可有效地延长PVC热稳定时间,抑制初期着色,降低加工能耗,热降解活化能较纯PVC提高了6.59 k J·mol^(-1)。按质量份数1/4/1与季戊四醇、硬脂酸锌复合后,热降解活化能较复合前提高了13.96 k J·mol^(-1),热稳定效果更优。展开更多
Laminopathies are genetic diseases that encompass a wide spectrum of phenotypes with diverse tissue pathologies and result mainly from mutations in the LMNA gene encoding nuclear lamin A/C. To date, at least 9 differe...Laminopathies are genetic diseases that encompass a wide spectrum of phenotypes with diverse tissue pathologies and result mainly from mutations in the LMNA gene encoding nuclear lamin A/C. To date, at least 9 different human diseases, which superficially seem to share little with one another, result from LMNA mutations. The position of the mutation within LMNA appears to be associated with the phenotypes. This review gives an overview of genotype-phenotype relationship and describes recent advances in animal models and pathogenic mechanisms.展开更多
文摘以山梨酸、La(NO_3)_3,Al(NO_3)_3,Mg(NO_3)_2和Na OH为主要原料合成了山梨酸插层镁铝镧类水滑石(Mg Al La-SA LDHs),通过X射线衍射(XRD)、红外光谱(FT-IR)进行结构表征。采用刚果红法、热老化烘箱法、转矩流变法、电导率法等研究了山梨酸插层类水滑石及与季戊四醇、硬脂酸锌复合后添加到聚氯乙烯(PVC)的热稳定性能。结果表明:山梨酸插层类水滑石可有效地延长PVC热稳定时间,抑制初期着色,降低加工能耗,热降解活化能较纯PVC提高了6.59 k J·mol^(-1)。按质量份数1/4/1与季戊四醇、硬脂酸锌复合后,热降解活化能较复合前提高了13.96 k J·mol^(-1),热稳定效果更优。
文摘Laminopathies are genetic diseases that encompass a wide spectrum of phenotypes with diverse tissue pathologies and result mainly from mutations in the LMNA gene encoding nuclear lamin A/C. To date, at least 9 different human diseases, which superficially seem to share little with one another, result from LMNA mutations. The position of the mutation within LMNA appears to be associated with the phenotypes. This review gives an overview of genotype-phenotype relationship and describes recent advances in animal models and pathogenic mechanisms.