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6篇 您的检索式:作者名="Pingwei Xiang"
    题名 作者 年代 出处 被引量
1Covalent organic frameworks derived hollow structured N-doped noble carbon for asymmetric-electrolyte Zn-air battery显示文摘We report a relatively low-temperature molten salt strategy to prepare hollow structured N-doped noble carbon(h-NNC) with highly desirable features of ultra-large surface area(1957 m^2 g^(-1)) and high graphitization, endowing the h-NNC with high activity toward catalysis of oxygen reduction reaction in acidic medium. The h-NNC is applied as cathode catalyst of an asymmetrical-electrolyte Zn-air battery, which exhibits an open circuit voltage of 2.11 V, a power density up to 270 mW cm^(-2),and an energy density of 1279 W h kg^(-1), behaving advantages over the conventional Zn-air batteries.Pingwei Cai Xinxin Peng Junheng Huang Jingchun Jia Xiang Hu Zhenhai Wen 2019Science China Chemistry2019,62,3:6
2Hydrothermal synthesis of LiCoPO4 cathode materials for rechargeable lithium ion batteries显示文摘Huang Xiang Ma Junfeng Wu Pingwei 2005Mater Lett2005,59,5:1
3Synthesis and characterization of hollow glass–ceramics microspheres显示文摘Nan Xu Jinhui Dai Zhibin Zhu Xiang Huang Pingwei Wu 2012Composites Science and Technology2012,,4:1
4Synthesis and characterization of hollow glass–ceramics microspheres显示文摘Nan Xu Jinhui Dai Zhibin Zhu Xiang Huang Pingwei Wu 2011Ceramics International2011,,7:1
5Hydrothermal synthesis of LiCoPO4 cathode materials for rechargeabh lithium ion batteries显示文摘Xiang Huang Junfeng Ma Pingwei Wu 2005Materials Letters2005,59,:1
6Response Mechanisms to Flooding Stress in Mulberry Revealed by Multi-Omics Analysis显示文摘Abiotic stress,including flooding,seriously affects the normal growth and development of plants.Mulberry(Morus alba),a species known for its flood resistance,is cultivated worldwide for economic purposes.The transcriptomic analysis has identified numerous differentially expressed genes(DEGs)involved in submergence tolerance in mulberry plants.However,a comprehensive analyses of metabolite types and changes under flooding stress in mulberry remain unreported.A non-targeted metabolomic analysis utilizing liquid chromatographytandem mass spectrometry(LC-MS/MS)was conducted to further investigate the effects of flooding stress on mulberry.A total of 1,169 metabolites were identified,with 331 differentially accumulated metabolites(DAMs)exhibiting up-regulation in response to flooding stress and 314 displaying down-regulation.Pathway enrichment analysis identified significant modifications in many metabolic pathways due to flooding stress,including amino acid biosynthesis and metabolism and flavonoid biosynthesis.DAMs and DEGs are significantly enriched in the Kyoto Encyclopedia of Genes and Genomes(KEGG)pathways for amino acid,phenylpropanoid and flavonoid synthesis.Furthermore,metabolites such as methyl jasmonate,sucrose,and D-mannose 6-phosphate accumulated in mulberry leaves post-flooding stress.Therefore,genes and metabolites associated with these KEGG pathways are likely to exert a significant influence on mulberry flood tolerance.This study makes a substantial contribution to the comprehension of the underlying mechanisms implicated in the adaptation of mulberry plants to submergence.Jingtao Hu Wenjing Chen Yanyan Duan Yingjing Ru Wenqing Cao Pingwei Xiang Chengzhi Huang Li Zhang Jingsheng Chen Liping Gan 2024Phyton-International Journal of Experimental Botany2024,93,2:0
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