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氧掺杂引起的T′相铜氧化合物低温磁性反常
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作者 熊玉峰 金铎 +4 位作者 姚玉书 吴非 贾顺莲 郭树权 赵忠贤 《科学通报》 EI CAS CSCD 北大核心 1998年第10期1054-1057,共4页
采用高压合成的方法对 (Eu1-xYx) 2 CuO4 和Sm2 CuO4 样品进行了氧掺杂 ,并发现了一个位于 2 9K附近新的低温磁性反常 .分析表明该反常也是铜原子磁矩的贡献 ,但有着和T′相化合物弱铁磁不同的形成机理 ,它的出现对应着由掺杂到CuO2 面... 采用高压合成的方法对 (Eu1-xYx) 2 CuO4 和Sm2 CuO4 样品进行了氧掺杂 ,并发现了一个位于 2 9K附近新的低温磁性反常 .分析表明该反常也是铜原子磁矩的贡献 ,但有着和T′相化合物弱铁磁不同的形成机理 ,它的出现对应着由掺杂到CuO2 面上的空穴产生的铁磁性团簇 .这一结果还揭示了T′相化合物区别于p型超导材料的一个独特性质 ,即没有顶点氧存在的T′相化合物的CuO2 面只能接受极微量的空穴 ,一旦达到极限 ,不管有多少氧掺杂进物相 ,都不能在CuO2 展开更多
关键词 铜氧化合物 超导体 t'相 掺杂 氧掺杂 磁性
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Comprehensive Understanding of Immune Cells in The Pathogenesis of Non-alcoholic Fatty Liver Disease
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作者 OUYANG Fei-Fan RASHEED Madiha +1 位作者 LI Bo DENG Yu-Lin 《生物化学与生物物理进展》 SCIE CAS 2024年第9期2082-2100,共19页
Non-alcoholic fatty liver disease(NAFLD)is the most common chronic liver disease,defined by several phases,ranging from benign fat accumulation to non-alcoholic steatohepatitis(NASH),which can lead to liver cancer and... Non-alcoholic fatty liver disease(NAFLD)is the most common chronic liver disease,defined by several phases,ranging from benign fat accumulation to non-alcoholic steatohepatitis(NASH),which can lead to liver cancer and cirrhosis.Although NAFLD is a disease of disordered metabolism,it also involves several immune cell-mediated inflammatory processes,either promoting and/or suppressing hepatocyte inflammation through the secretion of pro-inflammatory and/or anti-inflammatory factors to influence the NAFLD process.However,the underlying disease mechanism and the role of immune cells in NAFLD are still under investigation,leaving many open-ended questions.In this review,we presented the recent concepts about the interplay of immune cells in the onset and pathogenesis of NAFLD.We also highlighted the specific non-immune cells exhibiting immunological properties of therapeutic significance in NAFLD.We hope that this review will help guide the development of future NAFLD therapeutics. 展开更多
关键词 non-alcoholic fatty liver disease metabolically associated fatty liver disease(MAFLD) T cells myeloid cells mesenchymal stem cells
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