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用于微波/射频集成电路的一种新型低损耗介质——多孔硅及氧化多孔硅厚膜 被引量:5
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作者 龙永福 朱自强 +2 位作者 赖宗声 忻佩胜 石艳玲 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2002年第6期609-613,共5页
提出在单片微波集成电路 (MMIC)中用多孔硅 /氧化多孔硅厚膜作微波无源器件的低损耗介质膜 .研究了厚度为 70μm的多孔硅 /氧化多孔硅厚膜在低阻硅衬底上的形成 ,这层厚膜增加了衬底的电阻率 ,减少了微波的有效介质损耗 .通过测量在低... 提出在单片微波集成电路 (MMIC)中用多孔硅 /氧化多孔硅厚膜作微波无源器件的低损耗介质膜 .研究了厚度为 70μm的多孔硅 /氧化多孔硅厚膜在低阻硅衬底上的形成 ,这层厚膜增加了衬底的电阻率 ,减少了微波的有效介质损耗 .通过测量在低阻硅衬底上形成的氧化多孔硅厚膜上的共平面波导的微波特性 ,证明了在低阻硅衬底上用厚膜氧化多孔硅可以提高共平面传输线 (CPW) 展开更多
关键词 集成电路 微波/射频 多孔硅/氧化多孔硅 介质膜 损耗
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Confined structure regulations of molybdenum oxides for efficient tumor photothermal therapy 被引量:1
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作者 Limei Qin Dechao Niu +5 位作者 Xing Qin Qiqi Sun Zicong Wen Qili Yu Yongsheng Li Jianlin Shi 《Science China Materials》 SCIE EI CAS CSCD 2021年第12期3087-3100,共14页
Molybdenum oxide nanoparticles(NPs) with tunable plasmonic resonance in the near-infrared region display superior semiconducting features and photothermal properties, which are highly related to the crystalline and de... Molybdenum oxide nanoparticles(NPs) with tunable plasmonic resonance in the near-infrared region display superior semiconducting features and photothermal properties, which are highly related to the crystalline and defective structures such as oxygen deficiencies. However,fundamental understanding on the structure-function relationship between crystalline/defective structures and photothermal properties is still unclear. To address this, herein,we have developed an "in-situ confined oxidation-reduction"strategy to regulate the defect features of molybdenum oxide NPs in the dual-mesoporous silica nanoreactor. Especially, the effects of crystalline structure/oxygen defects of molybdenum oxides on the photothermal performances were investigated by facilely tuning the amount of molybdenum resource and the reduction temperature. As a photothermal nanoagent, the optimal defective molybdenum oxide NPs encapsulated in PEGylated porous silica nanoreactor(designated as MoO_(3)@PPSNs) exhibit excellent biological stability and strong localized surface plasmon resonance effect in nearinfrared absorption range with the highest photothermal conversion efficiency up to 78.7% under 808 nm laser irradiation. More importantly, the remarkable photothermal effects of MoO_(3)@PPSNs were comprehensively demonstrated both in vitro and in vivo. Consequently, we envision that the plasmonic MoO_(3)NPs in a biocompatible porous silica nanoreactor could be used as an efficient photothermal therapy agent for photothermal ablation of tumors. 展开更多
关键词 confinement effect porous silica nanoreactor molybdenum oxide oxygen deficiency photothermal therapy
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