[1]曾碩勛,等.材料科學研究熱點與前沿挖掘——以富勒烯為例[J].中國材料進展,2019,(02):161-166.[doi:10.7502/j.issn.1674-3962.2019.02.11]
ZENG Shuoxun,FENG Min,et al.Research Hot Spots and Fronts Mining of Material Science:A Case Study of Fullerene[J].MATERIALS CHINA,2019,(02):161-166.[doi:10.7502/j.issn.1674-3962.2019.02.11]
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材料科學研究熱點與前沿挖掘——以富勒烯為例(
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中國材料進展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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- 期數:
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2019年第02期
- 頁碼:
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161-166
- 欄目:
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研究報告
- 出版日期:
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2019-02-28
文章信息/Info
- Title:
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Research Hot Spots and Fronts Mining of Material Science:A Case Study of Fullerene
- 作者:
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曾碩勛1; 2; 馮敏3; 姜玲1; 2
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1. 甘肅省科技情報研究所,甘肅 蘭州 730000
2.甘肅省科技評價監測重點實驗室, 甘肅 蘭州 730000
3. 慶陽市農業科學研究院,甘肅 慶陽745000
- Author(s):
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ZENG Shuoxun1; 2; FENG Min3; JIANG Ling1; 2
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1.Institute of Sciences and Technology Information of Gansu,Lanzhou 730000, China
2. Key Laboratory of Scientific & Technical Evaluation and Monitoring of Gansu, Lanzhou 730000, China
3.Qingyang Agricultural Scientific Research Institute,Qingyang 745000, China
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- 關鍵詞:
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富勒烯; 研究熱點; 研究前沿; 潛在研究; 文獻計量
- Keywords:
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fullerene; hot spots; front; potential study; bibliometrics
- DOI:
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10.7502/j.issn.1674-3962.2019.02.11
- 文獻標志碼:
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A
- 摘要:
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富勒烯奇特物理結構使其具有許多特殊的物理化學性能,造就了其在物理、化學、生物等各領域研究和應用的非凡可能性,剖析該領域的研究熱點、前沿及潛在研究具有一定理論和現實意義。基于2007~2017年SCI數據庫富勒烯及其相關研究領域的原始文獻數據,借助文獻計量學基本原理,以及Bibexcel、CiteSpace、VOSviewer、UCinet等軟件的聯合應用,形成了富勒烯及其相關研究領域可視化知識圖譜,進而分析富勒烯領域的研究熱點、前沿及潛在研究。結果表明:研究最熱熱點為富勒烯的光伏電池;研究前沿包括非富勒烯聚合物、富勒烯太陽能光電轉換效率、富勒烯聚合物添加劑、富勒烯材料熱檢測、富勒烯醫藥抗癌;潛在(關聯)研究為用于制造石墨烯的碳納米管。
- Abstract:
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The peculiar physical structure of fullerenes creates the extraordinary possibilities of research and application in physics, chemistry, biology and other fields, therefore, it is of theoretical and practical significance to analyze the research hotspots, fronts and potential research in this field.Basing on the original data on fullerenes and related research fields in SCI database from 2007 to 2017 and combining with the softs of Bibexcel,CiteSpace,VOSviewer and UCinet,Visualization Knowledge Mapping about fullerene is obtained, and then the research hot spots, fronts and potential research of fullerenes are analyzed. The results show:fullerenebased photovoltaic cells are the hottest research hotspot;research fronts include nonfullerene polymers, fullerene solar photoelectric conversion efficiency, fullerene polymer additives, thermal detection with fullerene materials and the fullerene medicine anticancer;the potential study is the graphene production coming from carbon nanotubes.
備注/Memo
- 備注/Memo:
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作者簡介:曾碩勛,男,1981年生,碩士,助理研究員
更新日期/Last Update:
2019-01-30