期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
N,O-配体钴化合物的合成及其环氧丙烷羰化酯化的催化性能
1
作者 李泽辉 邹昊宇 +2 位作者 李林才 赵怡玲 朱红平 《有机化学》 SCIE CAS CSCD 北大核心 2023年第11期3907-3915,共9页
合成了9种N,O-配体化合物L^(1)~L^(9).化合物L^(1)~L^(4)分别与0.5 equiv.Co_(2)(CO)_(8)发生氧化还原配位反应生成中性单核钴化合物1~4;L^(5)~L^(7)分别与1 equiv.Co_(2)(CO)_(8)发生歧化和氧化还原配位反应;L8与5/6 equiv.Co_(2)(CO)_... 合成了9种N,O-配体化合物L^(1)~L^(9).化合物L^(1)~L^(4)分别与0.5 equiv.Co_(2)(CO)_(8)发生氧化还原配位反应生成中性单核钴化合物1~4;L^(5)~L^(7)分别与1 equiv.Co_(2)(CO)_(8)发生歧化和氧化还原配位反应;L8与5/6 equiv.Co_(2)(CO)_(8)以及1.2equiv.MeOH和0.4 equiv.H_(2)O发生歧化和氧化还原配位反应;L^(9)与0.5 equiv.Co_(2)(CO)_(8)发生歧化配位反应生成同钴核离子对化合物5~9.这些化合物中的阴离子均为[Co(CO)4]-.相应地,化合物8中的阳离子是三核钴簇,其它化合物中的阳离子都是单核钴.化合物1~9通过FT-IR谱学表征和元素分析数据确定,其中1和8进一步经过X射线单晶结构确认.考察了化合物1~9催化环氧丙烷(PO)羰化酯化的性能,获得42.6%~99.0%的PO转化率和34.1%~88.6%的β-羟基丁酸甲酯(HMB)总产率.研究了8和9随时间变化的催化反应,推测了同钴核离子对协同作用的催化反应机理. 展开更多
关键词 N O-配体钴化合物 羰化酯化催化性能 环氧丙烷(PO) β-羟基丁酸甲酯 同钴核离子对催化机理
原文传递
Regenerative cerium oxide nanozymes alleviate oxidative stress for efficient dry eye disease treatment 被引量:1
2
作者 haoyu zou Haiting Wang +3 位作者 Baoqi Xu Lin Liang Liangliang Shen Quankui Lin 《Regenerative Biomaterials》 SCIE EI 2022年第1期942-954,共13页
Dry eye disease(DED)is the most common eye disease in ophthalmic consultation except for refractive errors.Therefore,an exploration of valid and alternative therapeutic interventions is essential to feed the urgent me... Dry eye disease(DED)is the most common eye disease in ophthalmic consultation except for refractive errors.Therefore,an exploration of valid and alternative therapeutic interventions is essential to feed the urgent medical need.It has been demonstrated that oxidative stress causes multiple adverse effects in the pathogenesis of DED,thence alleviating oxidative stress is an effective therapeutic strategy for the DED treatment.Herein,we developed a cerium oxide nanozyme combined with branched poly(ethylene imine)-graftpoly(ethylene glycol)(bPEI-g-PEG).Owing to its stable hydrophilic chains on the surface reducing the cytotoxicity and loads of amines groups that be combined with cerium ions through coordination bonds,the modified nanozymes(referred to as CNP@bPEI-g-PEG)are water soluble and highly biocompatible.Meanwhile,due to its excellent antioxidant activity,CNP@bPEI-g-PEG nanozymes can mimic the activity of superoxide dismutase and catalase to scavenge intracellular reactive oxygen species(ROS).Experimental studies firmly demonstrated that the modified nanozymes were auto-regenerative and more active in scavenging excessive ROS and alleviating oxidative stress by cerium-element valence state recycling,recovering the morphology of corneal,conjunctival epithelium and the number of goblet cells.The advanced combination may offer a superior therapeutic strategy to deal with oxidative stress for effective treatment of DED. 展开更多
关键词 cerium oxide nanozymes dry eye reactive oxygen species oxidative stress
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部