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4篇 您的检索式:作者名="Xuewei GU"
    题名 作者 年代 出处 被引量
1Snapshot of Structural Variations in the Tibetan Wild Boar Genome at Single-Nucleotide Resolution显示文摘Genomic structural variations(SVs),particularly insertions,deletions and inversions,can contribute to the heterogeneity of millions of nucleotides within a genome,and are likely to make an important contribution to biological diversity and phenotypic variation(Alkan et al.,2011;Bickhart and Liu,2014).With the rapid development of the next-generation sequencing technologies and the new assembly methodologies,theLei Chen Long Jin Mingzhou Li Shilin Tian Tiandong Che Qianzi Tang Jing Lan Zhi Jiang Ruiqiang Li Yiren Gu Xuewei Li Jinyong Wang 2014Journal of Genetics and Genomics2014,41,12:1
2Open and close-ended CoMoS_(3) nanotubes for hydrogen evolution in acidic and basic conditions显示文摘Electrochemical hydrogen evolution reaction(HER) is a promising route to harvest high-purity hydrogen(H_(2)).Efficient and selective energy transformations rely on the development of novel catalytic materials in terms of compositions and structures that survive under harsh conditions.This study focuses on a unique nanostructured CoMoS_(3) catalyst for HER under strong acidic and basic electrolyte.The morphologies of the catalysts are fine-tuned by altering reaction times in a hydrothermal reaction.Limited reaction time generates twisted thin-sheet CoMoS_(3)(12 h),which spins into a nanotube with an extended synthetic time(16 h).As the reaction time increases to 20 h,the CoMoS_(3) composite creates open-ended nanotubes,facilitating reactants to penetrate and react actively in the inner space of the nanotubes.Further,prolonged reaction time(24 h) results in the formation of the close-ended CoMoS_(3) nanotubes.We find out that the open-ended structure plays an important role in achieving fast kinetics as well as creating more active sites in HER reaction.The catalyst delivers a profound performance under both acidic and basic conditions,with overpotentials of 93 mV and 115 mV(at a current density of 10 mA/cm^(2)) in the acidic and basic electrolytes,respectively.Moreover,it shows superior long-term durability in both solutions.This work will provide a great foundation for understanding the morphology effect with the same composited catalyst towards energy conversion reactions,not limited to HER.Yuan Li Xuewei Hou Jing Gu Veronika Mikhaylova Kangli Chen Hongming Zhang Shumin Han 2021Journal of Energy Chemistry2021,30,6:0
3Haploidentical stem cell transplantation used in treating primary plasma cell leukemia: a case report显示文摘Here we report a successful protocol in treatment of a patient with primary plasma cell leukemia (PPCL) using haploidentical stem cell transplantation (hi-HSCT). During first complete remission after routine chemotherapy, the patient received autologous blood stem cell transplantation, but he had relapse later. He gained a second CR after chemotherapy and underwent hi-HSCT from his daughter, who had HLA mismatched at three loci. Recovery of hemopoiesis was found at day 14 and complete donor chimerism was confirmed by PCR-STR on day 34, 95 and 238. The patients have survived disease-free for 56 months since hi-HSCT, without serious graft-versus-host-disease.Ouyang Guifang Zhu Huiling Hong Yongwei Xu Kaihong Mu Qitian Le Jing Wu Wenmiao Lu Ying Gu Xuewei Ni Lifeng 2010Journal of Medical Colleges of PLA(China)2010,25,1:0
4A facile solution approach for fabrication of small-sized MoSe_(2) with few layers as an efficient hydrogen evolution electrocatalyst显示文摘Unlike fossil fuels,hydrogen is a renewable and clean energy source.It is available in a large amount and spreads throughout the world.When reacting with oxygen,hydrogen releases energy to produce water as the only product.Hence,hydrogen is a promising alternative to fossil fuels[1].Today,most of hydrogen is produced via the steam methane reforming process,in which hightemperature steam is used to produce hydrogen from a methane source.However,methane is non-renewable,and carbon dioxide is generated in the reforming process.Weizhi WANG Wei LI Xinxin WANG Junyao WU Xuewei GU Mengjuan QI Enhong SHENG Konglin WU 2021Frontiers of Materials Science2021,15,3:0
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