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实验空间化学研究展望
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作者 徐燕 萧小月 欧阳自远 《地球科学进展》 CAS CSCD 1996年第1期53-58,共6页
将空间化学与材料科学、场化学和航天航空技术相结合,开辟空间化学新的研究方向,即实验空间化学,这是本文的宗旨。本文详叙了问题的由来,学科思想的萌生,学科建设的可行性和新的交叉学科的重大理论意义及其潜在的应用前景。
关键词 实验空间化学 材料科学 化学 学科交叉
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实验空间化学──材料科学、场化学与空间化学的交叉
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作者 萧小月 徐燕 《科技导报》 CAS CSCD 1995年第10期12-14,7,共4页
实验空间化学──材料科学、场化学与空间化学的交叉ExperimentalSpaceChemistry──AnInterdisciplineofMaterialsScience,FieldChemistryandSpa... 实验空间化学──材料科学、场化学与空间化学的交叉ExperimentalSpaceChemistry──AnInterdisciplineofMaterialsScience,FieldChemistryandSpaceChemistry¥//萧小月... 展开更多
关键词 实验空间化学 材料科学 化学 天体化学
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Steric paper based ratio-type electrochemical biosensor with hollow-channel for sensitive detection of Zn2+
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作者 Li Li Yan Zhang +3 位作者 Lina Zhang Shenguang Ge Mei Yan Jinghua Yu 《Science Bulletin》 SCIE EI CAS CSCD 2017年第16期1114-1121,共8页
The construction of flexible platform possessing the functions of immobilizing, separating, rinsing, and high-throughput analysis plays a significant role in biological and clinical research. Herein, hollow- channel t... The construction of flexible platform possessing the functions of immobilizing, separating, rinsing, and high-throughput analysis plays a significant role in biological and clinical research. Herein, hollow- channel technique was integrated with lab-on-paper for the simultaneous determination of two different concentrations of Zn2+ based on the origami principle, in which microfiuidic channels were first patterned on a cellulose paper using commercial solid-state wax printer. Hollow-channels were created by laser cutting method as the role of both injecting ending and reaction tank. After screen printing three elec- trodes system, the resulting planar paper sheets were then folded into steric structures and functional- ized by in-situ synthesized reduced graphene oxide. As a proof-of-concept, such lab-on-paper device was employed in the ratiometric electrochemical monitoring of zinc ion from the environment and HepG2 cells extract, by combining with co-catalysis of porous metal-organic frameworks and hemin/ G-quadruplex toward H202 in the linear range of 0.1-7,000 nmol/L. The results indicated that integrating hollow-channel with steric lab-on-paper offered a new methodological approach for the development of metal ions monitoring research. It is believed that it could be useful for various point-of-care related research fields, such as, on-site environmental monitoring, food safety, and disease diagnosis. 展开更多
关键词 Flexible platform Lab-on-paper device Ratiometric electrochemical monitoring Zinc ion
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