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Web of Science ºËÐĺϼ¯ÖÐµÄ "±»ÒýƵ´Î": 5 The properties and applications of helical carbon fibers and related materials: A review ×÷Õß: Raghubanshi, Himanshu; Dikio, Ezekiel Dixon; Naidoo, Eliazer Bobby JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY ¾í: 44 Ò³: 23-42 ³ö°æÄê: DEC 25 2016 È«ÎÄ ²é¿´ÕªÒª¹Ø±ÕÕªÒª ±»ÒýƵ´Î: 2 (À´×ÔËùÓÐÊý¾Ý¿â) ʹÓôÎÊý ʹÓôÎÊý ×î½ü 180 Ìì: 28 2013 ÄêÖÁ½ñ: 69 ½øÒ»²½Á˽â 2. Use of Carbon Nanotubes for the Analysis of Pesticide Residues in Fruits and Vegetables ×÷Õß: Abdulrauf, Lukman Bola; Tan, Guan Huat JOURNAL OF AOAC INTERNATIONAL ¾í: 99 ÆÚ: 6 Ò³: 1415-1425 ³ö°æÄê: NOV-DEC 2016 È«ÎÄ ²é¿´ÕªÒª¹Ø±ÕÕªÒª ±»ÒýƵ´Î: 0 (À´×ÔËùÓÐÊý¾Ý¿â) ʹÓôÎÊý ʹÓôÎÊý ×î½ü 180 Ìì: 13 2013 ÄêÖÁ½ñ: 28 ½øÒ»²½Á˽â 3. Stabilization and dispersion of carbon nanomaterials in aqueous solutions: A review ×÷Õß: Al-Hamadani, Yasir A. J.; Chu, Kyoung Hoon; Son, Ahjeong; µÈ. SEPARATION AND PURIFICATION TECHNOLOGY ¾í: 156 Ò³: 861-874 ×Ó¼: 2 ³ö°æÄê: DEC 17 2015 È«ÎÄ ²é¿´ÕªÒª¹Ø±ÕÕªÒª ±»ÒýƵ´Î: 15 (À´×ÔËùÓÐÊý¾Ý¿â) ʹÓôÎÊý ʹÓôÎÊý ×î½ü 180 Ìì: 22 2013 ÄêÖÁ½ñ: 154 ½øÒ»²½Á˽â 4. Growth of well-aligned carbon nanotubes with different shapes ×÷Õß: Zhao, Tingkai; Ji, Xianglin; Liu, Hongzhen; µÈ. APPLIED SURFACE SCIENCE ¾í: 357 Ò³: 2136-2140 ×Ó¼: B ³ö°æÄê: DEC 1 2015 È«ÎÄ ²é¿´ÕªÒª¹Ø±ÕÕªÒª ±»ÒýƵ´Î: 7 (À´×ÔËùÓÐÊý¾Ý¿â) ʹÓôÎÊý ʹÓôÎÊý ×î½ü 180 Ìì: 2 2013 ÄêÖÁ½ñ: 21 ½øÒ»²½Á˽â 5. Synthesis of Helical Carbon Fibers and Related Materials: A Review on the Past and Recent Developments ×÷Õß: Raghubanshi, Himanshu; Dikio, Ezekiel Dixon NANOMATERIALS ¾í: 5 ÆÚ: 2 Ò³: 937-968 ³ö°æÄê: JUN 2015 5È«ÎÄ ²é¿´ÕªÒª¹Ø±ÕÕªÒª ±»ÒýƵ´Î: 1 (À´×ÔËùÓÐÊý¾Ý¿â) ʹÓôÎÊý ʹÓôÎÊý ×î½ü 180 Ìì: 10 2013 ÄêÖÁ½ñ: 60 ½øÒ»²½Á˽⠴íÎó£ºÇëʹÓø´Ñ¡¿òÑ¡ÔñÖÁÉÙÒ»Ìõ¼Ç¼¡£ ´íÎ󣺼ǼºÅÐèÒª°´Ë³ÐòÊäÈë¡£ ´íÎó£ºËùÊäÈëµÄ¼Ç¼ºÅ²»Ôڴ˼ìË÷ʽÖС£ÇëÖØÐ¼ì²é±àºÅ¡£ ´íÎó: Ò»´ÎÖ»ÄÜÊä³ö 500 Ìõ¼Ç¼¡£ ´íÎó£ºÃ¿´ÎÖ»ÄÜÊä³ö 5000 Ìõ¼Ç¼¡£ ´íÎ󣺷dz£±§Ç¸¡¢Äú²»ÄÜÊä³ö 100,000 ÌõÒÔÉϵļǼ¡£µ÷Õû¼Ç¼Êý¡¢Ê¹Æä²»¶àÓÚ 100,000 Ìõ¡£ ´íÎ󣺼ǼºÅ²»Äܰüº¬ÌØÊâ×Ö·û¡£ ÇëʹÓø´Ñ¡¿òÑ¡ÔñÖÁÉÙÒ»Ìõ¼Ç¼¡£ ÎÒÃǵÄÊý¾Ý¿â²»°üº¬´ËÒ³ÉϵÄÈκα»ÒýרÀûµÄ¼Ç¼¡£Ã»ÓÐÒªÊä³öµÄÄÚÈÝ¡£ ´íÎó£ºÇëÊäÈë¼Ç¼·¶Î§¡£ µ¥»÷ "È·¶¨" °´Å¥±íʾÎÒÈ·ÈÏËùÑ¡µÄ³ö°æÎïϵ±¾ÈË׫д»òÎÒÒÑ»ñµÃ¹ÜÀí¸Ã×÷ÕßµÄ ResearcherID ¸öÈËÐÅÏ¢µÄÊÚȨ¡£ ×¢Òâ: ´Ë±ê¼Ç½á¹ûÁбí°üº¬ 500 ÌõÒÔÉϼǼ¡£ÄúÒѾѡÔñµ¼³öǰ 500 Ìõ¼Ç¼¡£ Òªµ¼³ö 500 ÌõÒÔÉϼǼ£¬ÇëʹÓÃÑ¡Ïî "¼Ç¼ X ÖÁ Y" ²¢ÊäÈë 501 ÖÁ 1000£¬1001 ÖÁ 1500 (ÒÔ´ËÀàÍÆ)¡£ÄúÊÇ·ñÈ·¶¨Òª¼ÌÐøµ¼³öµÚ 1 ÖÁ 500 Ìõ¼Ç¼? ×¢Òâ: Ò»´ÎÖ»Äܶ©¹º 35 Ìõ¼Ç¼¡£ Çë¼õÉÙËùÑ¡¼Ç¼µÄÊýÁ¿£¬È»ºóÖØÊÔ¡£ ÄúÒѳ¬³öÔÊÐíµÄ×î´ó±ê¼Ç¼Ç¼Êý (50000)¡£Äú±ØÐë±£´æ»òµ¼³öÏÖÓбê¼Ç¼Ç¼£¬²ÅÄÜÌí¼Ó¸ü¶à¼Ç¼¡£ Ñ¡ÔñÒ³Ãæ |
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Web of Science µÚ 1 Ò³ (¼Ç¼ 1 -- 1) ÉÏÒ»Ò³ (²»»î¶¯) [ 1 ] ÏÂÒ»Ò³ (²»»î¶¯) ´òÓ¡´ËÒ³ µÚ 1 Ìõ£¬¹² 1 Ìõ ±êÌâ: Low-temperature synthesis and characterization of helical carbon fibers by one-step chemical vapour deposition ×÷Õß: Jin, YZ (Jin, Yongzhong); Chen, J (Chen, Jian); Fu, QS (Fu, Qingshan); Li, BH (Li, Binghong); Zhang, HZ (Zhang, Huazhi); Gong, Y (Gong, Yong) À´Ô´³ö°æÎï: APPLIED SURFACE SCIENCE ¾í: 324 Ò³: 438-442 DOI: 10.1016/j.apsusc.2014.10.107 ³ö°æÄê: JAN 1 2015 ÕªÒª: Helical carbon fibers (HCNFs) were synthesized by one-step chemical vapour deposition using cupric tartrate as a catalyst at temperature below 500 degrees C. The bound rubber of natural rubber (NR)/HCNFs were also prepared in this study. The results of thermogravimetry-differential scanning calorimetry (TG/DSC) for cupric tartrate nanoparticles show that the transformation of C4H4CuO6 -> Cu reaction occurs at similar to 250-310 degrees C. The characterization of scanning electron microscopy (SEM), transmission electron microscope (TEM), X-ray diffraction (XRD) and Raman spectrum for the synthesized products confirms that the synthesis of HCNFs is highly temperature-dependent. The straight fibers with the fiber diameter of 100-400 nm are obtained at 280 degrees C and HCNFs can be synthesized at higher temperature, with the coil diameter of 0.5-1 mu m and fiber diameter of 100-200 nm at 380 degrees C, and the coil diameter of 100 nm and fiber diameter of similar to 80 nm at 480 degrees C. The maximum of the bound-rubber content (37%) can be obtained with the addition of similar to 100 wt.% HCNFs in NR, which indicates that the coiled configuration of HCNFs makes a noticeable contribution to the reinforcement of NR/CB system. (C) 2014 Elsevier B.V. All rights reserved. Èë²ØºÅ: WOS:000346088500057 ISSN: 0169-4332 eISSN: 1873-5584 ¹Ø±Õ Web of Science µÚ 1 Ò³ (¼Ç¼ 1 -- 1) ÉÏÒ»Ò³ (²»»î¶¯) [ 1 ] = |
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bringlee: ½ð±Ò+15, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2017-08-31 15:27:36
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Ðľ²_ÒÀÈ»: LS-EPI+1, ¸ÐлӦÖú 2017-09-04 08:58:34
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Low-temperature synthesis and characterization of helical carbon fibers by one-step chemical vapour deposition ×÷Õß:Jin, YZ (Jin, Yongzhong)[ 1 ] ; Chen, J (Chen, Jian)[ 1 ] ; Fu, QS (Fu, Qingshan)[ 1 ] ; Li, BH (Li, Binghong)[ 2,3 ] ; Zhang, HZ (Zhang, Huazhi)[ 1 ] ; Gong, Y (Gong, Yong)[ 1 ] APPLIED SURFACE SCIENCE ¾í: 324 Ò³: 438-442 DOI: 10.1016/j.apsusc.2014.10.107 ³ö°æÄê: JAN 1 2015 ²é¿´ÆÚ¿¯Ó°Ïì APPLIED SURFACE SCIENCE ³ö°æÉÌ ELSEVIER SCIENCE BV, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS ISSN: 0169-4332 eISSN: 1873-5584 Ñо¿ÁìÓò Chemistry Materials Science Physics ÕªÒª Helical carbon fibers (HCNFs) were synthesized by one-step chemical vapour deposition using cupric tartrate as a catalyst at temperature below 500 degrees C. The bound rubber of natural rubber (NR)/HCNFs were also prepared in this study. The results of thermogravimetry-differential scanning calorimetry (TG/DSC) for cupric tartrate nanoparticles show that the transformation of C4H4CuO6 -> Cu reaction occurs at similar to 250-310 degrees C. The characterization of scanning electron microscopy (SEM), transmission electron microscope (TEM), X-ray diffraction (XRD) and Raman spectrum for the synthesized products confirms that the synthesis of HCNFs is highly temperature-dependent. The straight fibers with the fiber diameter of 100-400 nm are obtained at 280 degrees C and HCNFs can be synthesized at higher temperature, with the coil diameter of 0.5-1 mu m and fiber diameter of 100-200 nm at 380 degrees C, and the coil diameter of 100 nm and fiber diameter of similar to 80 nm at 480 degrees C. The maximum of the bound-rubber content (37%) can be obtained with the addition of similar to 100 wt.% HCNFs in NR, which indicates that the coiled configuration of HCNFs makes a noticeable contribution to the reinforcement of NR/CB system. (C) 2014 Elsevier B.V. All rights reserved. ¹Ø¼ü´Ê ×÷Õ߹ؼü´Ê:Helical carbon fibers; Nanomaterials; Chemical vapor deposition; Bound rubber KeyWords Plus:NANOTUBES; MECHANISM; DECOMPOSITION; NANOFIBERS; COMPOSITE; ACETYLENE; CATALYST; BLACK ×÷ÕßÐÅÏ¢ ͨѶ×÷ÕßµØÖ·: Chen, J (ͨѶ×÷Õß) Sichuan Univ Sci & Engn, Dept Mat & Chem Engn, Zigong 643000, Sichuan, Peoples R China. ÔöÇ¿×éÖ¯ÐÅÏ¢µÄÃû³Æ Sichuan University of Science & Engineering µØÖ·: [ 1 ] Sichuan Univ Sci & Engn, Dept Mat & Chem Engn, Zigong 643000, Sichuan, Peoples R China ÔöÇ¿×éÖ¯ÐÅÏ¢µÄÃû³Æ Sichuan University of Science & Engineering [ 2 ] China Rubber Grp Carbon Black Ind Res, Zigong 643000, Sichuan, Peoples R China [ 3 ] Design Inst, Zigong 643000, Sichuan, Peoples R China µç×ÓÓʼþµØÖ·:wuhangzs@163.com »ù½ð×ÊÖúÖÂл »ù½ð×ÊÖú»ú¹¹ ÊÚȨºÅ National Natural Science Foundation of China 51072125 Scientific and Technical Project of Sichuan Province 2013JQ0024 2013JY0124 Breeding Project of Sichuan University of Science and Engineering 2011PY06 ²é¿´»ù½ð×ÊÖúÐÅÏ¢¹Ø±Õ»ù½ð×ÊÖúÐÅÏ¢ The authors thank the National Natural Science Foundation of China (51072125), the Scientific and Technical Project of Sichuan Province (2013JQ0024 and 2013JY0124) and the Breeding Project of Sichuan University of Science and Engineering (2011PY06) for the financial support of this research. ³ö°æÉÌ ELSEVIER SCIENCE BV, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS Àà±ð / ·ÖÀà Ñо¿·½Ïò:Chemistry; Materials Science; Physics Web of Science Àà±ð:Chemistry, Physical; Materials Science, Coatings & Films; Physics, Applied; Physics, Condensed Matter ÎÄÏ×ÐÅÏ¢ ÎÄÏ×ÀàÐÍ:Article ÓïÖÖ:English Èë²ØºÅ: WOS:000346088500057 ISSN: 0169-4332 eISSN: 1873-5584 ÆäËûÐÅÏ¢ IDS ºÅ: AW1ZT Web of Science ºËÐĺϼ¯ÖÐµÄ "ÒýÓõIJο¼ÎÄÏ×": 26 Web of Science ºËÐĺϼ¯ÖÐµÄ "±»ÒýƵ´Î": 5 JCR® Àà±ð JCR ·ÖÇø CHEMISTRY, PHYSICAL Q2 MATERIALS SCIENCE, COATINGS & FILMS Q1 PHYSICS, APPLIED Q1 PHYSICS, CONDENSED MATTER Q2 Êý¾ÝÀ´×ÔµÚ 2016 °æ Journal Citation Reports |
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