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Daikin准备选用COF2作为室内清洁气体 被引量:2
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作者 于剑昆 《化学推进剂与高分子材料》 CAS 2005年第1期13-13,共1页
据日本方面报道,Daikin Industrial公司计划在Osaka县Yodogawa工厂建造一个工业规模的COF,生产装置。用在半导体化学气体沉积室(CVD)清洁设备上的这种气体已被证明是一种有很大潜力的替代物,它可用于替代现在使用的NF3和高氟化碳.
关键词 DaikinIndustrial公司 cof2 室内清洁气体 氟碳化合物
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Porous CoF2 Spheres Synthesized by a One-Pot Solvothermal Method as High Capacity Cathode Materials for Lithium-Ion Batteries 被引量:8
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作者 Qun Guan Jianli Cheng +1 位作者 Xiaodong Li Bin Wang 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2017年第1期48-54,共7页
Up to now, there are rare reports of CoF2 spheres used as high capacity cathode materials. Herein, porous CoF2 spheres were synthesized and studied as cathode materials for LIBs. The porous CoF2 spheres were synthesiz... Up to now, there are rare reports of CoF2 spheres used as high capacity cathode materials. Herein, porous CoF2 spheres were synthesized and studied as cathode materials for LIBs. The porous CoF2 spheres were synthesized by a facile one-pot solvothermal method using a safe and inexpensive ammonium fluoride as the fluorine sources. The nature of the synthesis can avoid using corrosive fluorine sources and additional high-temperature thermal treatment The structure, morphologies and electrochemical performance of the samples obtained at different reaction times and solvothermal temperatures were investigated. The results show that the CoF2 spheres obtained at 200 ℃ for 20 h show better electrochemical performances, including a high initial discharge capacity, good capacity retention and high Coulombic efficiency. It can deliver a high initial discharge capacity of 537.8 mAoh·g-1 and keep 127.4 mA·h.g- 1 after 30 cycles used as cathode materials for lithium-ion batteries. The good electrochemical performances may be attributed to good crystallinity, porous structure and relatively intermediate sphere size. 展开更多
关键词 cof2 SPHERE solvothermal method cathode materials lithium-ion battery
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Air-Teflon尾流中COF_2辐射
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作者 周学华 《宇航学报》 EI CAS CSCD 北大核心 1992年第3期57-64,共8页
有限显式差分法用于求解小钝锥高超声速化学非平衡轴对称空气尾流流场。本文把该方法推广应用到Air-Teflon尾流边界层,并把文献中的尾流外缘条件和p/x项进行了改进。对Air-Teflon尾流中的辐射体COF_2和NO的红外辐射进行了详细的计算。对... 有限显式差分法用于求解小钝锥高超声速化学非平衡轴对称空气尾流流场。本文把该方法推广应用到Air-Teflon尾流边界层,并把文献中的尾流外缘条件和p/x项进行了改进。对Air-Teflon尾流中的辐射体COF_2和NO的红外辐射进行了详细的计算。对COF_2,计算了四个频波—2.4,2.9,5.2,8.Oμ的辐射。计算指出,随着C_2F_4浓度的增加,COF_2辐射通量快速增加,NO辐射通量增加却很缓慢。当C_2F_4浓度大于1000ppm时,COF_2辐射通量就超过了NO的辐射通量,成为Aif-Teflon尾流中4—10μ光谱区中主要辐射体之一。 展开更多
关键词 cof2辐射 红外辐射 高超声速 尾流
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α-甲氧羰基二氟乙酰氟及3,3,3-三氯二氟丙酰氟的合成 被引量:1
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作者 何永海 李维钦 徐保培 《有机化学》 SCIE CAS CSCD 北大核心 1991年第2期179-182,共4页
α-甲氧羰基二氟乙酰氟 FCOCF<sub>2</sub>CO<sub>2</sub>CH<sub>3</sub>(1)及3,3,3-三氯二氟丙酰氟Cd<sub>3</sub>CF<sub>2</sub>COF(2)是合成含羧酸前体的全氟烯醚... α-甲氧羰基二氟乙酰氟 FCOCF<sub>2</sub>CO<sub>2</sub>CH<sub>3</sub>(1)及3,3,3-三氯二氟丙酰氟Cd<sub>3</sub>CF<sub>2</sub>COF(2)是合成含羧酸前体的全氟烯醚的重要原料。全氟烷基乙烯基醚 CF<sub>2</sub>=CFOR<sub>f</sub> 与四氟乙烯共聚得到的共聚物,具有聚四氟乙烯的化学稳定性,又能克服聚四氟乙烯难以加工的缺点。近二十年来,由于发现在全氟聚合物的主链上引入带功能团的侧链后,可以使其在保持氟碳链优点的同时,又具有某些特殊功能,如化学催化、离子交换与选择透过性、电荷传递等能力,因此合成带各种功能团的全氟烷基乙烯基醚,作为全氟功能高分子的共聚单体,是一个有趣的课题。 展开更多
关键词 FCOCF2CO2CH3 CdCF2COF 全氟烯醚
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An Electrochemically Stable 2D Covalent Organic Framework for High-performance Organic Supercapacitors 被引量:2
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作者 Rashid Iqbal Amir Badshah +1 位作者 Ying-Jie Ma Lin-Jie Zhi 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2020年第5期558-564,I0008,共8页
An electrochemically stable two-dimensional covalent organic framework,PI-COF,has been synthesized by a scalable solvothermal method.PI-COF possesses a highly crystalline structure,well-defined pores,high specific sur... An electrochemically stable two-dimensional covalent organic framework,PI-COF,has been synthesized by a scalable solvothermal method.PI-COF possesses a highly crystalline structure,well-defined pores,high specific surface area,and cluster macrostructure.Thanks to these features,PI-COF can work as electrode materials in organic supercapacitors,exhibiting a specific capacitance of 163 F/g at 0.5 A/g over a wide potential window of 0-2.5 V.Moreover,PI-COF shows excellent rate performance,which can deliver 96 F/g even at a high current density of 40 A/g.Because of the high capacitance and wide potential window,PI-COF has achieved a superior energy density of 35.7 W h/kg at a power density of 250 W/kg.Most importantly,due to the remarkable electrochemical stability,the PI-COF based device shows outstanding cycling stability with 84.1%capacitance maintained(137 F/g)after 3.0×10^4 charged/discharged cycles at 1 A/g.This work should shed light on designing new COF-based electrode materials for and other electrochemical devices. 展开更多
关键词 2D COFs Electrochemically stable Electrode materials High energy density Organic supercapacitors
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Two-dimensional conjugated N-rich covalent organic frameworks for superior sodium storage 被引量:1
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作者 Xiya Yang Yucheng Jin +6 位作者 Baoqiu Yu Lei Gong Wenbo Liu Xiaolin Liu Xin Chen Kang Wang Jianzhuang Jiang 《Science China Chemistry》 SCIE EI CSCD 2022年第7期1291-1298,共8页
Sodium-ion batteries(SIBs) are considered as a promising next-generation energy storage system. To achieve the large-scale application of SIBs, it is crucial to develop cost-effective anode materials with high Na-ion ... Sodium-ion batteries(SIBs) are considered as a promising next-generation energy storage system. To achieve the large-scale application of SIBs, it is crucial to develop cost-effective anode materials with high Na-ion storage capacity. Herein twodimensional(2D) conjugated covalent organic frameworks(c COFs) with N-rich phthalocyanine(Pc) units fused via benzene moieties(named MPc-2D-c COFs) were explored as the SIBs anode materials. Electrochemical tests reveal their high reversible capacities of 538 and 342 m A h g^(-1) at 50 and 1000 m A g^(-1), respectively, good rate performance, and excellent stability,comparable to the state-of-the-art anode materials of SIBs, indicating their outstanding Na-ion storage performance. Ex situ Xray photoelectron and Fourier transform infrared spectroscopies together with theoretical calculations disclose the N atoms at the pore channels and conjugated pyrrole moieties of MPc-2D-c COFs provide abundant Na-ion storage sites. This, in cooperation with the enhanced electrical conductivity owing to the 2D conjugated structure, contributes to the outstanding Na-ion storage capacity of MPc-2D-c COFs. The present result is surely helpful for developing high-performance and cost-effective COFs as electroactive materials for SIBs. 展开更多
关键词 covalent organic frameworks sodium-ion batteries PHTHALOCYANINE anode materials π-conjugated 2D COFs
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Merging benzotrithiophene covalent organic framework photocatalysis with TEMPO for selective oxidation of organic sulfides
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作者 Fengwei Huang Yuexin Wang +1 位作者 Xiaoyun Dong Xianjun Lang 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第11期3290-3296,共7页
Visible light photocatalysis of covalent organic frameworks(COFs) has made significant progress in recent years. Benzotrithiophene(BTT), a planar, electron-rich building block, turns out to be foundational in assembli... Visible light photocatalysis of covalent organic frameworks(COFs) has made significant progress in recent years. Benzotrithiophene(BTT), a planar, electron-rich building block, turns out to be foundational in assembling COFs in which the fullπ-conjugation of BTT is essential to facilitate electron transfer. Herein, a sp~2 carbon-conjugated COF, namely BTT-sp~2c-COF, is assembled from benzo[1,2-b:3,4-b′:5,6-b′′]trithiophene-2,5,8-tricarbaldehyde and [1,1′:4′,1′′-terphenyl]-4,4′′-dicarbonitrile towards photocatalysis. More importantly, TEMPO(2,2,6,6-tetramethylpiperidin-1-yl)oxyl, 1 mol%) could considerably accelerate the selective oxidation of organic sulfides with O_(2) over BTT-sp~2c-COF. TEMPO mediates hole transfer between BTT-sp~2c-COF and organic sulfides, and O-atoms are incorporated into sulfoxides via an electron transfer pathway. Merging BTT-sp~2c-COF photocatalysis with TEMPO generally applies to transforming organic sulfides into sulfoxides. This work implies the full π-conjugation of electron-rich building blocks into COFs is a viable strategy for selective visible light photocatalysis. 展开更多
关键词 sp~2 carbon-conjugated COF electron-rich building blocks visible light hole mediator organic sulfoxides
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