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12篇 您的检索式:作者名="Yu Meixiu"
    题名 作者 年代 出处 被引量
1Are droughts becoming more frequent or severe in China based on the Standardized Precipitation Evapotranspiration Index: 1951–2010?显示文摘Meixiu Yu Qiongfang Li Michael J. Hayes Mark D. Svoboda Richard R. Heim 2014Int J Climatol2014,,3:2
2Are droughtsbecoming more frequent or severe in China based on thestandardized precipitation evapotranspiration Index: 1951 -2010?显示文摘Yu Meixiu Li Qiongfang Michael JH 2014International Journal of Climatology2014,34,:1
3Investiga- tion into the impacts of land-use change on sediment yield characteristics in the upper Huaihe River basin, China显示文摘Cai Tao Li Qiongfang Yu Meixiu 2012Journal of Hydrologic Engineering2012,53,6:1
4Investiga- tion into the impacts of the Gezhouba and the Three Gor- ges Reservoirs on the flow regime of the Yangtze River 显示文摘Yu Meixiu Li Qiongfang Lu Guobin 2013Journal of Hydrologic Engineering2013,18,9:1
5Investigation into the impacts of land-use change on sediment yield characteristics in the upper Huaihe River basin,China显示文摘Cai Tao Li Qiongfang Yu Meixiu 2012Physics and Chemistry of the Earth2012,53,:1
6Are droughts becoming more frequent in China based on the SPEI: 1951-20107 显示文摘YU Meixiu LI Qiongfang HAYES M J 2014International Journal of Climatology2014,34,3:1
7Aredroughts becoming more frequent or severe in China :Based on the standardized precipitation evapotranspi-ration index: 1951-2010 显示文摘Yu Meixiu Li Qiongfang Michael J H* 2014Royal MeteorologicalSociety2014,34,3:1
8Are droughts becoming more frequent or severe in China based on the Standardized Precipitation Evapotranspiration Index: 1951–2010?显示文摘Meixiu Yu Qiongfang Li Michael J. Hayes Mark D. Svoboda Richard R. Heim Int J Climatol0,,3:1
9Impacts of the Gezhouba and Three Gorges reservoirs on the sediment regime in the Yangtze River,China显示文摘LI Qiongfang YU Meixiu 2011Journal of Hydrology2011,403,34:1
10Investigationinto the impact of the Gezhouba and the Three GoresReservoirs on the flow regime of the Yangtze River显示文摘Yu Meixiu Li Qiongfang Lu Guobin 2013Journal of Hydrologic Engineering2013,18,9:1
11Impacts of the Gezhouba and Three Gorges Reservoirs on the sediment regime in the Yangtze River,China显示文摘Li Qiongfang Yu Meixiu Lu Guobin 2011Journal of Hydrology2011,403,:1
12Enhancing anchoring and catalytic conversion of polysulfides by nitrogen deficient cobalt nitride for advanced lithium-sulfur batteries显示文摘While lithium-sulfur(Li-S)battery has attracted remarkable attention owing to the high theoretical capacity,its practical application is still hindered by the shuttle and sluggish conversion kinetics of intermediate lithium polysulfides(Li PSs).Defect engineering,which can regulate the electronic structure and in turn influence the surface adsorption and catalytic capability,has been regarded as a feasible strategy to deal with the above challenges.However,few studies on nitrogen vacancies and their mechanisms are reported.Herein,cobalt nitride with nitrogen vacancies grown on multi-walled carbon nanotube(CNTCo N-VN)is designed and applied as the separator modification material to investigate the enhancing mechanism of nitrogen vacancies on Li-S batteries.The experimental evidence and theoretical calculation indicate that the introduction of nitrogen vacancies into cobalt nitride can enhance the chemical affinity to Li PSs and effectively hamper the shuttle effect.Meanwhile the reduced band gap of the d-band center of Co and p-band center of N for CNT-Co N-VNand the promoted diffusion of Li^(+) can expedite the solid-liquid and liquid-liquid conversions of sulfur species.Due to these superiorities,the cell with CNT-Co NVNmodified separator delivers a favorable initial capacity of 901 m Ah g^(-1)and a capacity of 660 m Ah g^(-1)can be achieved after 250 cycles at 2 C.This work explores the application of metal nitride with nitrogen vacancies and sheds light on the development of functional separators for high-efficient Li-S batteries.Min Luo Yu Bai Rui Sun Meixiu Qu Mengyuan Wang Zhanfeng Yang Zhenhua Wang Wang Sun Kening Sun 2022Journal of Energy Chemistry2022,31,10:0
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