期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
无梗五加果化学成分、质量控制及药理活性研究进展 被引量:2
1
作者 马艺溢 王福蕾 宋洋 《中国药师》 CAS 2016年第9期1743-1747,共5页
无梗五加果作为我国传统道地药材,其主要成分为三萜类、木脂素类、香豆素类、黄酮类化合物等,具有抗炎镇痛、抗氧化、抗血小板凝集等多种药理活性。本文通过对无梗五加果的化学成分、质量控制及药理活性进行综述,为无梗五加果进一步的... 无梗五加果作为我国传统道地药材,其主要成分为三萜类、木脂素类、香豆素类、黄酮类化合物等,具有抗炎镇痛、抗氧化、抗血小板凝集等多种药理活性。本文通过对无梗五加果的化学成分、质量控制及药理活性进行综述,为无梗五加果进一步的深入研究和开发利用提供参考。 展开更多
关键词 无梗五加果 化学成分 质量控制 药理活性
下载PDF
Oxygen vacancies boosting ultra-stability of mesoporous ZnO-CoO@N-doped carbon microspheres for asymmetric supercapacitors 被引量:7
2
作者 Di Yao Fulei Wang +4 位作者 Wu Lei Yan Hua Xifeng Xia Jinping Liu Qingli Hao 《Science China Materials》 SCIE EI CSCD 2020年第10期2013-2027,共15页
Long-term cycling stability of pseudocapacitive materials is pursued for high-energy supercapacitors.Herein,the mesoporous zinc-cobalt oxide heterostructure@nitrogendoped carbon(ZnO-CoO@NC)microspheres with abundant o... Long-term cycling stability of pseudocapacitive materials is pursued for high-energy supercapacitors.Herein,the mesoporous zinc-cobalt oxide heterostructure@nitrogendoped carbon(ZnO-CoO@NC)microspheres with abundant oxygen vacancies are self-assembled through a hydrothermal method combined with an annealing post-treatment.The multifunctional polyvinyl pyrrolidone(PVP)is used as a structure-directing agent,the precursor of NC and the initiator of abundant oxygen vacancies in zinc-cobalt oxide microspheres.XPS demonstrates the generation of surface oxygen vacancies resulted from the reduction effect of conductive NC,and further confirms the weaker interaction between the metal ions and oxygen atoms.As a result,the electrode based on ZnO-CoO@NC in 2 mol L^-1 KOH shows enhanced capacitive performance with an excellent cycle stability of 92%retention of the initial capacitance after 40,000 charge-discharge cycles at 2 A g^-1,keeping the morphology unchanged.The assembled asymmetric supercapacitor,graphene//ZnO-CoO@NC,also performs good cyclic stability with 94%capacitance retention after 10,000 cycles at 2 A g^-1.The remarkable electrochemical performance of the self-assembled ZnO-CoO@NC composite is attributed to the mesoporous architecture,abundant oxygen vacancies,conductive ZnO scaffold for CoO crystals forming heterostructure of ZnO-CoO and the high conductive NC layer covering outside of the multi-metal oxide nanoparticles.Hence,the ZnO-CoO@NC holds great promise for high-performance energy storage applications. 展开更多
关键词 supercapacitor zinc oxide cobaltous oxide doped carbon cycling stability HETEROSTRUCTURE
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部