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仪器分析化学实验:降钙素原快速定量微流控芯片检测 被引量:1
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作者 辜敏 熊桧文 +2 位作者 刘丽玲 孔继烈 方雪恩 《大学化学》 CAS 2024年第4期87-93,共7页
本文设计了一个基于微流控芯片技术检测降钙素原含量的蛋白免疫分析实验,通过溶液的配制、微流控芯片的制备、标准曲线的绘制和未知液样本测试等实验过程,让学生了解微流控芯片技术这一新兴科学研究领域,增强学生的动手能力,锻炼学生的... 本文设计了一个基于微流控芯片技术检测降钙素原含量的蛋白免疫分析实验,通过溶液的配制、微流控芯片的制备、标准曲线的绘制和未知液样本测试等实验过程,让学生了解微流控芯片技术这一新兴科学研究领域,增强学生的动手能力,锻炼学生的科研思维,在培养化学研究兴趣的同时提升创新思维和知识融会贯通的能力。 展开更多
关键词 微流控芯片 降钙素原 仪器分析化学实验
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Structure adapting of bulk FeS_(2) micron particles and the corresponding anode for high performance sodium-ion batteries 被引量:1
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作者 Yong Li Daixin Ye +6 位作者 Wen Liu Rui Guo Haijuan Pei Hongbing Zhao Jiujun Zhang Jingying Xie jilie kong 《Journal of Materiomics》 SCIE 2022年第6期1278-1286,共9页
The practical application of Pyrite iron disulfide (FeS_(2)) as anode material of sodium-ion battery is limitedby its low electronic conductivity, large volume changes during charge/discharge. To overcome thesechallen... The practical application of Pyrite iron disulfide (FeS_(2)) as anode material of sodium-ion battery is limitedby its low electronic conductivity, large volume changes during charge/discharge. To overcome thesechallenges, a novel structure design single-walled carbon nanotubes (SWCNTs) composited polyaniline(PANI)-wrapped FeS_(2) (FeS_(2)-PANI-SWCNTs) electrodes are successfully achieved in this work. PANI canprotect the FeS_(2) particles from collapse and offer a protective layer to relive the polysulfides shuttlingeffect, and also promote the electron and Naþ diffusion during the chemical conversion process. Underthe dual protection of PANI and SWCNTs, the FeS_(2)-PANI-SWCNTs film electrode demonstrates a goodstructural integrity, which accounts for the excellent rate capability and long cycling performance. Inaddition, the PANI coating and SWCNT network in the fabricated electrode can synergistically anchorpolysulfides and therefore strongly suppress shuttle effect during the chargeedischarge processes,resulting in less capacity loss. The anode with a loading 3.2 mg cm 2 of FeS_(2) coated with PANI exhibitsthe initial coulombic efficiency of 81.5% and delivers a specific capacity of 625.8 mAh g^(-1) after 100 cyclesat 200 mA g^(-1). High flexible and binder-free FeS_(2)-PANI-SWCNTs film anode demonstrates a reversiblecapacity of 537 mAh g^(-1) after 550 cycles at 1 A g^(-1). This research may offer an efficient method toimprove electrochemical performance of the metal sulfides in sodium-ion batteries. 展开更多
关键词 Pyrite iron disulfide POLYANILINE Single wall carbon nanotube Flexible Sodium-ion batteries
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Continuous Detection of pH-responsive Drug Delivery System in Cells in situ by Confocal Laser Scanning Microscopy
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作者 Yang Sun Zhipeng Ran +5 位作者 Hongyan Tang Yong Li Wenshuang Song Qingguang Ren Wuli Yang jilie kong 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2013年第6期787-793,共7页
Mesoporous silica nanoparticles (MSN) were coated by pH-responsive polymer chitosan-poly (methacrylic acid) (CS-PMAA). This nano drug delivery system showed good application prospects and the polymer-coated micr... Mesoporous silica nanoparticles (MSN) were coated by pH-responsive polymer chitosan-poly (methacrylic acid) (CS-PMAA). This nano drug delivery system showed good application prospects and the polymer-coated microspheres were promising site-specific anticancer drug delivery carriers in biomedical field. A continuous detection of pH-responsive drug delivery system in cells in situ, utilizing MSN/CS-PMAA composite microspheres, was pro- posed. Two kinds of different cell lines, tumor cell line (Hela) and normal somatic cells (293T), were used to inves- tigate the behaviours of the drug loaded system in the cells. Conclusions could be drawn from the fluorescent im- ages obtained by confocal laser scanning microscopy (CLSM), modified drug-loaded microspheres (MSN/CS-PMAA) were ingested into cells more easily, the uptake of DOX@FITC-MSN/CS-PMAA by HeLa/293T cells were performed at pH 7.4/pH 6.8, DOX was released during the ingestion process, fluorescence intensity de- creased with time because of efflux transport and photo-bleaching. Fluoresence detection by flow cytometry was performed as comparison. The continuous fluorescent observation in situ could be widely used in the pH-responsive releasing process of drug delivery system in the cells. 展开更多
关键词 continuous detection in situ CLSM drug delivery pH responsive nanoparticles
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