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电化学条件下喹喔啉-2(1H)-酮C(3)—H功能化的研究进展 被引量:3
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作者 李丹丹 王晓辰 +4 位作者 李闪闪 付晨雨 李倩倩 许东涛 马莹莹 《有机化学》 SCIE CAS CSCD 北大核心 2021年第12期4610-4622,共13页
喹喔啉酮及其衍生物是一类重要的氮杂环化合物,广泛存在于具有各种生物活性的天然产物、药物及功能材料中,因此,喹喔啉酮的C—H功能化引起了化学工作者的广泛关注.电化学合成无需外加氧化还原试剂,直接利用电子这一"清洁试剂"... 喹喔啉酮及其衍生物是一类重要的氮杂环化合物,广泛存在于具有各种生物活性的天然产物、药物及功能材料中,因此,喹喔啉酮的C—H功能化引起了化学工作者的广泛关注.电化学合成无需外加氧化还原试剂,直接利用电子这一"清洁试剂"参与氧化还原反应,具有反应条件温和及原子经济性好等特点,十分符合绿色化学符合绿色化学和可持续发展的要求.随着对电化学合成反应机理的深入研究以及反应设备的标准化,该方法已经成为喹喔啉酮类化合物功能化的强有力工具.综述了有机电化学在喹喔啉-2(1H)-酮C(3)—H功能化领域所取得的研究进展,对反应的条件和机理进行了系统的总结,并对该领域所面临的挑战及发展方向进行了展望与探讨. 展开更多
关键词 电化学 喹喔啉-2(1H)-酮 C(3)—H功能化
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Nitrogen Isotopes from the Neoproterozoic Liulaobei Formation,North China:Implications for Nitrogen Cycling and Eukaryotic Evolution
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作者 Ting Yang Xinqiang Wang +2 位作者 dongtao xu Xiaoying Shi Yongbo Peng 《Journal of Earth Science》 SCIE CAS CSCD 2022年第5期1309-1319,共11页
The nitrogen isotope compositions(δ^(15)N )of sedimentary rocks can provide information about the nutrient N cycling and redox conditions that may have played important roles in biological evolution in Earth’s histo... The nitrogen isotope compositions(δ^(15)N )of sedimentary rocks can provide information about the nutrient N cycling and redox conditions that may have played important roles in biological evolution in Earth’s history.Although considerableδ^(15)N data for the Precambrian have been published,there is a large gap during the Early Neoproterozoic that restrains our understanding of the linkages among N cycling,ocean redox changes and biological evolution during this key period.Here,we report bulkδ^(15)N and organic carbon isotope(^(δ)13C_(org))compositions as well as the total nitrogen(TN)and total organic carbon(TOC)contents from the Tonian fossiliferous Liulaobei Formation in the southern part of the North China Platform.Theδ^(15)N in the study section is dominated by very stable values centering around+4.3‰,which is moderately lower than that in modern sediments(~+6‰).These positiveδ^(15)N values were attributed to partial denitrification under low primary productivity(scenario 1)and/or denitrification coupled with dissimilatory nitrate reduction to ammonium(DNRA)(scenario 2).In either case,the availability of fixed nitrogen may have provided the nutrient N required to facilitate facilitated eukaryotic growth.Our study highlights the pivotal role of nutrient N in the evolution of eukaryotes. 展开更多
关键词 NEOPROTEROZOIC Tonian Liulaobei Formation nitrogen isotopes eukaryotic evolution nutrient limitation GEOCHEMISTRY
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