期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Research process on radioactive^(18)F-labelled chemical agents as positron emission tomography imaging probes for tumour detection
1
作者 WU Rui ZHANG Yankun +2 位作者 LU Jiufu ZHANG Pengfei WANG Yang 《无机化学学报》 北大核心 2025年第9期1702-1718,共17页
Malignant tumours always threaten human health.For tumour diagnosis,positron emission tomography(PET)is the most sensitive and advanced imaging technique by radiotracers,such as radioactive^(18)F,^(11)C,^(64)Cu,^(68)G... Malignant tumours always threaten human health.For tumour diagnosis,positron emission tomography(PET)is the most sensitive and advanced imaging technique by radiotracers,such as radioactive^(18)F,^(11)C,^(64)Cu,^(68)Ga,and^(89)Zr.Among the radiotracers,the radioactive^(18)F-labelled chemical agent as PET probes plays a predominant role in monitoring,detecting,treating,and predicting tumours due to its perfect half-life.In this paper,the^(18)F-labelled chemical materials as PET probes are systematically summarized.First,we introduce various radionuclides of PET and elaborate on the mechanism of PET imaging.It highlights the^(18)F-labelled chemical agents used as PET probes,including[^(18)F]-2-deoxy-2-[^(18)F]fluoro-D-glucose([^(18)F]-FDG),^(18)F-labelled amino acids,^(18)F-labelled nucleic acids,^(18)F-labelled receptors,^(18)F-labelled reporter genes,and^(18)F-labelled hypoxia agents.In addition,some PET probes with metal as a supplementary element are introduced briefly.Meanwhile,the^(18)F-labelled nanoparticles for the PET probe and the multi-modality imaging probe are summarized in detail.The approach and strategies for the fabrication of^(18)F-labelled PET probes are also described briefly.The future development of the PET probe is also prospected.The development and application of^(18)F-labelled PET probes will expand our knowledge and shed light on the diagnosis and theranostics of tumours. 展开更多
关键词 ^(18)F RADIOACTIVE IMAGING positron emission tomography LABELLED TUMOUR
在线阅读 下载PDF
Sc-doped strontium iron molybdenum cathode for high-efficiency CO_(2)electrolysis in solid oxide electrolysis cell
2
作者 LIU Zhen ZHANG Lihong +4 位作者 XU Chunming WANG Zhenhua QIAO Jinshuo SUN Wang SUN Kening 《燃料化学学报(中英文)》 北大核心 2025年第2期272-281,共10页
Solid oxide electrolysis cells(SOECs)can effectively convert CO_(2)into high value-added CO fuel.In this paper,Sc-doped Sr_(2)Fe_(1.5)Mo_(0.3)Sc_(0.2)O_(6−δ)(SFMSc)perovskite oxide material is synthesized via solid-p... Solid oxide electrolysis cells(SOECs)can effectively convert CO_(2)into high value-added CO fuel.In this paper,Sc-doped Sr_(2)Fe_(1.5)Mo_(0.3)Sc_(0.2)O_(6−δ)(SFMSc)perovskite oxide material is synthesized via solid-phase method as the cathode for CO_(2)electrolysis by SOECs.XRD confirms that SFMSc exhibits a stable cubic phase crystal structure.The experimental results of TPD,TG,EPR,CO_(2)-TPD further demonstrate that Sc-doping increases the concentration of oxygen vacancy in the material and the chemical adsorption capacity of CO_(2)molecules.Electrochemical tests reveal that SFMSc single cell achieves a current density of 2.26 A/cm^(2) and a lower polarization impedance of 0.32Ω·cm^(2) at 800°C under the applied voltage of 1.8 V.And no significant performance attenuation or carbon deposition is observed after 80 h continuous long-term stability test.This study provides a favorable support for the development of SOEC cathode materials with good electro-catalytic performance and stability. 展开更多
关键词 solid oxide electrolysis cells CATHODE PEROVSKITE ELECTRO-CATALYSIS element doping
在线阅读 下载PDF
马齿苋红色素的提取及稳定性研究 被引量:7
3
作者 张强 刘军海 《中国调味品》 CAS 北大核心 2023年第8期193-198,共6页
以马齿苋为原料,甜菜碱为提取强化剂,采用超声辅助提取马齿苋红色素,并探究pH、热、食品添加剂、氧化剂/还原剂、金属离子以及光照对马齿苋红色素稳定性的影响。结果表明,马齿苋红色素提取的最佳工艺:以水为提取剂,料液比为1∶30(g/mL)... 以马齿苋为原料,甜菜碱为提取强化剂,采用超声辅助提取马齿苋红色素,并探究pH、热、食品添加剂、氧化剂/还原剂、金属离子以及光照对马齿苋红色素稳定性的影响。结果表明,马齿苋红色素提取的最佳工艺:以水为提取剂,料液比为1∶30(g/mL),提取温度为50℃,提取时间为30 min,甜菜碱用量为0.003 g。在此工艺条件下,马齿苋红色素的提取效果最佳。马齿苋红色素稳定性实验结果表明,其具有一定的耐酸性、抗氧化作用和抗还原作用,大多数常用食品添加剂可与马齿苋红色素共同使用;高温易破坏马齿苋红色素,在提取及应用时需避免高温储存;在实验或者生产过程中,应尽量避免马齿苋红色素与含有Fe、Ni、Cr的试剂或者器皿接触;马齿苋红色素可作为食品添加剂,用于含有K^(+)、Na^(+)、Ca^(2+)、Sr^(2+)等对人体有益的金属溶液中;不建议在碱性环境下使用马齿苋红色素并且最好采用密封保存。 展开更多
关键词 马齿苋红色素 超声波辅助提取 正交实验 稳定性
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部