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Nano-multilayered ZrN‒Ag/Mo‒S‒N film design for stable anti-frictional performance at a wide range of temperatures
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作者 Hongbo JU Jing LUAN +3 位作者 Junhua XU Albano CAVALEIRO Manuel EVARISTO Filipe FERNANDES 《Friction》 SCIE EI CAS CSCD 2024年第12期2826-2837,共12页
A multilayer film,composed by ZrN‒Ag(20 nm)and Mo‒S‒N(10 nm)layers,combining the intrinsic lubricant characteristics of each layer was deposited using DC magnetron sputtering system,to promote lubrication in a wide-ra... A multilayer film,composed by ZrN‒Ag(20 nm)and Mo‒S‒N(10 nm)layers,combining the intrinsic lubricant characteristics of each layer was deposited using DC magnetron sputtering system,to promote lubrication in a wide-range of temperatures.The results showed that the ZrN‒Ag/Mo‒S‒N multilayer film exhibited a sharp interface between the different layers.A face-centered cubic(fcc)dual-phases of ZrN and Ag co-existed in the ZrN‒Ag layers,whilst the Mo‒S‒N layers displayed a mixture of hexagonal close-packed MoS_(2)(hcp-MoS_(2))nano-particles and an amorphous phase.The multilayer film exhibited excellent room temperature(RT)triblogical behavior,as compared to the individual monolayer film,due to the combination of a relative high hardness with the low friction properties of both layers.The reorientation of MoS_(2)parallel to the sliding direction also contributed to the enhanced anti-frictional performance at RT.At 400℃,the reorientation of MoS_(2)as well as the formation of MoO_(3)phase were responsible for the lubrication,whilst the hard t-ZrO_(2)phase promoted abrasion and,consequently,led to increasing wear rate.At 600℃,the Ag_(2)MoO_(4)double-metal oxide was the responsible for the low friction and wear-resistance;furthermore,the observed transformation from t-ZrO_(2)to m-ZrO_(2),could also have contributed to the better tribological performance. 展开更多
关键词 DC magnetron sputtering zrn‒ag/mo‒s‒n multilayer film tribological properties tribo-phases
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^(64)Cu-DOTA-SPIONs-PEG-FA:靶向叶酸受体阳性肿瘤的PET/MRI双模态显像探针 被引量:1
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作者 孙钰林 申一鸣 +2 位作者 梁积新 陈玉清 沈浪涛 《核化学与放射化学》 CSCD 北大核心 2017年第4期298-308,共11页
报道了一种可用于叶酸受体阳性肿瘤显像的PET/MRI双模态显像探针(^(64)Cu-DOTA-SPIONs-PEGFA)的合成、初步的生物学评价及PET/CT和MRI显像结果。该探针由包覆了生物相容性的聚乙二醇(poly ethylene glycol,PEG)、超顺磁氧化铁纳米粒子(s... 报道了一种可用于叶酸受体阳性肿瘤显像的PET/MRI双模态显像探针(^(64)Cu-DOTA-SPIONs-PEGFA)的合成、初步的生物学评价及PET/CT和MRI显像结果。该探针由包覆了生物相容性的聚乙二醇(poly ethylene glycol,PEG)、超顺磁氧化铁纳米粒子(superparamegnetic iron oxide nanoparticles,SPIONs)、叶酸(folic acid,FA)、1,4,7,10-四乙酸-1,4,7,10-四氮杂环十二烷(1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid,DOTA)和正电子放射性核素^(64)Cu组成。经纯化后,^(64)Cu-DOTA-SPIONs-PEG-FA放化纯大于98%。荷KB裸鼠体内分布显示:^(64)Cu-DOTA-SPIONs-PEG-FA在肝脏、脾脏和肺中的放射性摄取较高,与非靶向标记物^(64)Cu-DOTA-SPIONs-PEG-OH比较,其对KB细胞瘤有明显的靶向作用。在MRI和PET/CT模式下,KB肿瘤能被较清晰地显像。^(64)Cu-DOTA-SPIONs-PEG-FA作为KB细胞肿瘤的PET/MRI双模态显像剂,有待于进一步深入研究以改善其标记率、稳定性和比活度等。 展开更多
关键词 PET/MRI双模态显像探针 超顺磁性氧化铁纳米粒子 叶酸 DOTA 64Cu
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