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Study on PVC Grafted with Acrylic Rare Earths 被引量:3
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作者 张明 陈晓松 +3 位作者 周兰香 陈海燕 严长浩 邱关明 《Journal of Rare Earths》 SCIE EI CAS CSCD 2004年第2期245-248,共4页
The copolymers were formed by the graft copolymerization of PVC with acrylic rare earth. The principle and method of the graft copolymerization of PVC and acrylic rare earth were discussed. The graft copolymers were c... The copolymers were formed by the graft copolymerization of PVC with acrylic rare earth. The principle and method of the graft copolymerization of PVC and acrylic rare earth were discussed. The graft copolymers were characterized by FT-IR spectra and scanning electron microscope (SEM).The thermal stability of the graft-copolymers was studied by thermogravimetric analysis (TG). The experiment results show that the thermal resistance and toughness of the graft copolymers are obviously enhanced. 展开更多
关键词 organic polymeric materials graft copolymer of PVC/acrylic rare earth graft copolymerization PVC thermal stability TOUGHNESS rare earths
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Study on Preparation and Properties of PVC Film Modified by Rare Ea rth 被引量:1
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作者 邱关明 张明 +4 位作者 周兰香 陈晓松 陈海燕 严长浩 Okamoto Hiroshi 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第1期37-41,共5页
The transparent PVC films were prepared by tape casting. In the process of prepa ration, rare earth nitrate, as a kind of modifier, was added to th e solution of PVC and THF. These PVC films were tested after being cr... The transparent PVC films were prepared by tape casting. In the process of prepa ration, rare earth nitrate, as a kind of modifier, was added to th e solution of PVC and THF. These PVC films were tested after being crosslinked b y ultraviolet light. It is found that the mechanical and physical properties of all the PVC films modified by rare earth nitrate are greatly enhanced. 展开更多
关键词 organic polymeric materials PVC film modif ied by rare earths tape casting rare earths
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Virtual special issue:Organic and polymer materials for electronics
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作者 Pei Zhao Liangliang Zhu 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第12期1706-1708,共3页
Welcome to this virtual special issue focusing on organic and polymer materials for electronics published in Chinese Chemical Letters since 2017. For more than a century, people have always believed that organic compo... Welcome to this virtual special issue focusing on organic and polymer materials for electronics published in Chinese Chemical Letters since 2017. For more than a century, people have always believed that organic compounds cannot be well employed for electronic conducting. Till 2000,Heeger,MacDiarmid and Shirakawa were acknowledged by the Nobel Prize of chemistry for 展开更多
关键词 Virtual special issue:organic and polymer materials for electronics
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Tunable wavelength filters using polymer long-period waveguide gratings based on metal-cladding directly defined technique
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作者 Ji-Hou Wang Chang-Ming Chen +5 位作者 Yang Zheng Xi-Bin Wang Yun-Ji Yi Xiao-Qiang Sun Fei Wang Da-Ming Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第2期268-273,共6页
In this work, long-period waveguide grating-based tunable wavelength filters using organic–inorganic grafting poly(methyl methacrylate)(PMMA) materials are designed and fabricated by metal-cladding directly defin... In this work, long-period waveguide grating-based tunable wavelength filters using organic–inorganic grafting poly(methyl methacrylate)(PMMA) materials are designed and fabricated by metal-cladding directly defined technique.The thermal stabilities and optical properties of the organic–inorganic grafting PMMA core materials are analyzed. Structures and performance parameters of the waveguide gratings and self-electrode heaters are designed and simulated. The contrast of the filter is about 15 d B and the resonant wavelength can be tuned by different electric powers applied to the metal-cladding self-electrode heaters. The temperature sensitivity is 3.5 nm/℃ and the switching time is about 1 ms. The technique is very suitable for realizing the optoelectronic integrated wavelength-division-multiplexing systems. 展开更多
关键词 organic–inorganic grafting materials polymer optical waveguide long-period grating filter metalcladding defined technique
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Pressure-induced polymerization of butyndioic acid and its Li^+ salt
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作者 Mufei Yue Yajie Wang +4 位作者 Lijuan Wang Xiaohuan Lin Kuo Li Haiyan Zheng Tao Yang 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第2期328-330,共3页
Conductive organic polymers with carbonyl groups are considered as potential cathode materials of the Li^+ battery. Driven by extremely high pressure, 2-butyndioic acid and its Li~+ salt polymerize at around 4 and 1... Conductive organic polymers with carbonyl groups are considered as potential cathode materials of the Li^+ battery. Driven by extremely high pressure, 2-butyndioic acid and its Li~+ salt polymerize at around 4 and 10 GPa, respectively, which demonstrates that pressure-induced polymerization is a robust method for synthesizing substituted polyacetylene-like conductors. 展开更多
关键词 High pressure Lithium battery organic cathode material Polymerization Alkyne
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