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国产无硫柳汞三价流感病毒裂解疫苗上市后免疫原性和安全性观察 被引量:9
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作者 杨北方 邓鹏 +12 位作者 郭雪 郑念祥 李琼 钱小爱 王兆 黄菊芬 陈海平 石煊雯 马燕丽 姜葳 占发先 叶建君 刘小琴 《中国疫苗和免疫》 北大核心 2019年第2期180-183,214,共5页
目的评价一种无硫柳汞的国产三价流感病毒裂解疫苗(TIV)上市后免疫原性和安全性。方法采用单中心、无对照设计在湖北省某乡镇招募≥6月龄健康受试者,接种本研究TIV,检测受试者免疫前和全程免疫后21-28d血清H1N1、H3N2、B型流感病毒血凝... 目的评价一种无硫柳汞的国产三价流感病毒裂解疫苗(TIV)上市后免疫原性和安全性。方法采用单中心、无对照设计在湖北省某乡镇招募≥6月龄健康受试者,接种本研究TIV,检测受试者免疫前和全程免疫后21-28d血清H1N1、H3N2、B型流感病毒血凝抑制(HI)抗体,观察接种后7d内不良反应。结果 591名受试者TIV免疫后H1N1、H3N2、B型流感病毒HI抗体阳转率分别为73.3%、86.3%、65.8%,抗体几何平均滴度(GMT)分别比免疫前增长10.9倍、20.2倍、8.0倍,抗体保护率分别为97.5%、100%、96.6%。720名受试者接种疫苗后总不良反应发生率为4.4%,其中局部反应、全身反应分别为0.8%、3.6%,未发现严重不良反应。结论本研究TIV应用于≥6月龄人群的免疫原性和安全性良好。 展开更多
关键词 三价流感病毒裂解疫苗 免疫原性 安全性
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Heterostructure of 2D MoSe_(2) nanosheets vertically grown on bowllike carbon for high-performance sodium storage 被引量:2
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作者 nianxiang shi Guangzeng Liu +3 位作者 Baojuan Xi Xuguang An Changhui Sun Shenglin Xiong 《Nano Research》 SCIE EI CSCD 2024年第5期4023-4030,共8页
Transition metal dichalcogenides are attractive anode materials for sodium ion batteries(SIBs)due to their high theoretical capacity and large interlayer spacing.However,its practical application is hampered by the sl... Transition metal dichalcogenides are attractive anode materials for sodium ion batteries(SIBs)due to their high theoretical capacity and large interlayer spacing.However,its practical application is hampered by the sluggish kinetics of Na^(+)insertion and structure collapse caused by Na^(+)insertion/deinsertion.Herein,the heterostructures of MoSe_(2) nanosheets vertically growing on bowl-like carbon(MoSe_(2)@C)are designed and prepared by a template method coupled with selenization treatment to boost storage sodium performance.The hollow and collapse could provide enough storage space for Na^(+)and alleviate the volume expansion during the charge/discharge processes.MoSe_(2) nanosheets vertically grown on carbon could expose more active sites for adsorbing Na^(+)to enhance the utilization rate of electrode materials.Moreover,building heterostructures by combining different phase components could facilitate Na^(+)diffusion and advance reaction kinetics.Benefiting from these merits,the bowl-like MoSe_(2)@C shows outstanding reversible capacity(356.8 mAh·g^(-1) after 1500 cycles at 1 A·g^(-1))and remarkable rate performance(249.9 mAh·g^(-1)10 A·g^(-1)). 展开更多
关键词 MoSe_(2)nanosheets bowl-like carbon HETEROSTRUCTURE sodium ion batteries
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MoSe_(2)/TiO_(2)heterostructure integrated in N-doped carbon nanosheets assembled porous core-shell microspheres for enhanced sodium storage 被引量:3
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作者 nianxiang shi Guangzeng Liu +4 位作者 Baojuan Xi Xuguang An Changhui Sun Xinzheng Liu Shenglin Xiong 《Nano Research》 SCIE EI CSCD 2023年第7期9398-9406,共9页
Engineering the structure and composition of electrode materials is one of the essential means for achieving excellent electrochemical performance.The rational design of Na+host materials is still a massive challenge ... Engineering the structure and composition of electrode materials is one of the essential means for achieving excellent electrochemical performance.The rational design of Na+host materials is still a massive challenge for sodium ion batteries(SIBs).Herein,MoSe_(2)/TiO_(2)heterostructure is integrated with N-doped carbon nanosheets to assemble into hierarchical flowerlike porous core-shell microspheres(MoSe_(2)/TiO_(2)@N-C),which is firstly reported by room-temperature stirring coupled with vulcanization treatment.The cavity of the core-shell structure could provide enough storage space for Na+and alleviate the volume expansion during charge/discharge processes.The apertures between nanosheets provide a guarantee for the rapid penetration of electrolyte to enhance the utilization rate of electrode materials.Furthermore,building heterostructures by combining different phase structures can facilitate electron transfer and accelerate reaction kinetics.Benefiting from the synergistic contributions of structure and composition,MoSe_(2)/TiO_(2)@N-C as SIBs anode material shows better reversible capacities of 302.5 mAh·g^(-1)at 1 A·g^(-1)for 400 cycles and 217.4 mAh·g^(-1)at 4 A·g^(-1)for 900 cycles.Strikingly,the reversible capacities can be restored entirely to the initial level after a high current density cycle. 展开更多
关键词 MoSe_(2)/TiO_(2) flower-like hierarchical porous core-shell microspheres HETEROSTRUCTURE sodium ion batteries
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