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Zn_xFe_(3-x)O_4-α-Fe_2O_3纳米多晶材料中的隧道磁电阻效应与微结构(英文) 被引量:1
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作者 朱健民 朱信华 +5 位作者 杨科 刘治国 都有为 邢定钰 李齐 冯端 《电子显微学报》 CAS CSCD 北大核心 2002年第3期279-282,共4页
在具有纳米绝缘层的多晶锌铁氧体体系中 ,当晶界为α Fe2 O3纳米量级的绝缘层时 ,则构成 (ZnxFe3 xO4) α Fe2 O3非均匀体 ,电子显微分析证实了这种微结构。该体系在 0 5T磁场、4 2K温度下 ,磁电阻效应可达 1 2 80 %,30 0K下为 1 58%
关键词 ZnxFe3-xO4-α-Fe2O3 纳米多晶材料 隧道磁电阻效应 锌铁酸盐 透射电子显微镜
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Recent advances in immobilized enzymes on nanocarriers 被引量:12
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作者 曹诗林 徐培 +5 位作者 马永正 姚潇晓 姚远 宗敏华 李雪辉 娄文勇 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第11期1814-1823,共10页
Recent progress in nanotechnology has provided high-performance nanomaterials for enzyme immobilization.Nanobiocatalysts combining enzymes and nanocarriers are drawing increasing attention because of their high cataly... Recent progress in nanotechnology has provided high-performance nanomaterials for enzyme immobilization.Nanobiocatalysts combining enzymes and nanocarriers are drawing increasing attention because of their high catalytic performance,enhanced stabilities,improved enzyme-substrate affinities,and reusabilities.Many studies have been performed to investigate the efficient use of cellulose nanocrystals,polydopamine-based nanomaterials,and synthetic polymer nanogels for enzyme immobilization.Various nanobiocatalysts are highlighted in this review,with the emphasis on the design,preparation,properties,and potential applications of nanoscale enzyme carriers and nanobiocatalysts. 展开更多
关键词 Enzyme immobilization Cellulose nanocrystal POLYDOPAMINE Biodegradable material
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Alumina Photonic Crystals with Defect Modes for Sensor Application
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作者 闫鹏 费广涛 +3 位作者 李惠 商国亮 吴兵 张立德 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第1期121-124,I0004,共5页
One-dimensional alumina photonic crystals with defect modes were successfully fabricated through inserting a constant voltage waveform into the periodic voltage signals. The trans-mission spectra show that the thickne... One-dimensional alumina photonic crystals with defect modes were successfully fabricated through inserting a constant voltage waveform into the periodic voltage signals. The trans-mission spectra show that the thickness of defects plays a key role in determining the trans-mittance of defect modes. When the thickness was ?180 nm, an obvious defect mode with the high transmittance of 55% and a narrow full width at half maximum of 18 nm was observed in the original photonic band gaps. The defect mode shifted linearly with the increasing of refractive index of the analytes infiltrated into pores, indicating its potential application in chemical sensing or bio-sensing. 展开更多
关键词 NANOMATERIAL Porous material ALUMINA Photonic crystal SENSOR
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Multifunctional FeCo-Graphitic Carbon Nanocrystals for Combined Imaging, Drug Delivery and Tumor-Specific Photothermal Therapy in Mice 被引量:4
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作者 Sarah P. Sherlock Hongjie Dai 《Nano Research》 SCIE EI CAS CSCD 2011年第12期1248-1260,共13页
Ultrasmall FeCo-graphitic carbon shell nanocrystals (FeCo/GC) are promising multifunctional materials capable of highly efficient drug delivery in vitro and magnetic resonance imaging in vivo. In this work, we demon... Ultrasmall FeCo-graphitic carbon shell nanocrystals (FeCo/GC) are promising multifunctional materials capable of highly efficient drug delivery in vitro and magnetic resonance imaging in vivo. In this work, we demonstrate the use of FeCo/GC for highly effective cancer therapy through combined drug delivery, tumor-selective near-infrared photothermal therapy, and cancer imaging of a 4T1 syngeneic breast cancer model. The graphitic carbon shell of the ~4 nm FeCo/GC readily loads doxorubicin (DOX) via π-π stacking and absorbs near-infrared light giving photothermal heating. When used for cancer treatment, intravenously administrated FeCo/GC-DOX led to complete tumor regression in 45% of mice when combined with 20 min of near-infrared laser irradiation selectively heating the tumor to 43-45 ℃. In addition, the use of FeCo/GC-DOX results in reduced systemic toxicity compared with free DOX and appears to be safe in mice monitored for over 1 yr. FeCo/GC-DOX is shown to be a highly integrated nanoparticle system for synergistic cancer therapy leading to tumor regression of a highly aggressive tumor model. 展开更多
关键词 NANOCRYSTALS photothermal therapy DOXORUBICIN HYPERTHERMIA magnetic resonance imaging
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