化工进展
化工進展
화공진전
Chemical Industry and Engineering Progress
2015年
12期
4259-4264,4279
,共7页
导电油墨%碳系导电油墨填料%导电机理%碳纳米管%石墨烯
導電油墨%碳繫導電油墨填料%導電機理%碳納米管%石墨烯
도전유묵%탄계도전유묵전료%도전궤리%탄납미관%석묵희
conductive ink%carbon-based conductive ink filler%conductive mechanism%carbon nanotubes%graphene
导电油墨起源于导电涂料,印刷电子行业的兴起产生了对导电油墨的研发需求.本文综述了碳系导电油墨填料的研究现状、导电机理、应用前景及其发展方向.首先概述了传统碳系导电油墨填料(石墨、炭黑、碳纤维及其混合物)以及新型碳系导电油墨填料(碳纳米管、石墨烯)的研究进展,重点分析了传统碳系填料的研究方向及手段,解释了新型碳系填料应用于导电油墨的优越性.然后从宏观和微观层面概述了当前主流的几种导电机理的基本原理和适用范围,并指出了目前对油墨导电性能的研究只能定性分析而不能定量描述的局限性.最后,重点介绍了两种新型碳系导电油墨填料的最新研究进展和应用方向,特别指出了当前对碳纳米管和石墨烯填料的研究亟需解决的问题,总结了二者今后的研究重点和研究趋势.
導電油墨起源于導電塗料,印刷電子行業的興起產生瞭對導電油墨的研髮需求.本文綜述瞭碳繫導電油墨填料的研究現狀、導電機理、應用前景及其髮展方嚮.首先概述瞭傳統碳繫導電油墨填料(石墨、炭黑、碳纖維及其混閤物)以及新型碳繫導電油墨填料(碳納米管、石墨烯)的研究進展,重點分析瞭傳統碳繫填料的研究方嚮及手段,解釋瞭新型碳繫填料應用于導電油墨的優越性.然後從宏觀和微觀層麵概述瞭噹前主流的幾種導電機理的基本原理和適用範圍,併指齣瞭目前對油墨導電性能的研究隻能定性分析而不能定量描述的跼限性.最後,重點介紹瞭兩種新型碳繫導電油墨填料的最新研究進展和應用方嚮,特彆指齣瞭噹前對碳納米管和石墨烯填料的研究亟需解決的問題,總結瞭二者今後的研究重點和研究趨勢.
도전유묵기원우도전도료,인쇄전자행업적흥기산생료대도전유묵적연발수구.본문종술료탄계도전유묵전료적연구현상、도전궤리、응용전경급기발전방향.수선개술료전통탄계도전유묵전료(석묵、탄흑、탄섬유급기혼합물)이급신형탄계도전유묵전료(탄납미관、석묵희)적연구진전,중점분석료전통탄계전료적연구방향급수단,해석료신형탄계전료응용우도전유묵적우월성.연후종굉관화미관층면개술료당전주류적궤충도전궤리적기본원리화괄용범위,병지출료목전대유묵도전성능적연구지능정성분석이불능정량묘술적국한성.최후,중점개소료량충신형탄계도전유묵전료적최신연구진전화응용방향,특별지출료당전대탄납미관화석묵희전료적연구극수해결적문제,총결료이자금후적연구중점화연구추세.
Conductive ink derives from conductive coating,and the rise of printed electronics industry produces demands of research and development for conductive ink. This work reviews the research status,conductive mechanism,application and the development direction of carbon-based conductive ink fillers. Firstly,the research achievements of the traditional carbon-based conductive ink fillers (graphite,carbon black,carbon fiber and its mixtures) and new carbon-based conductive ink fillers (carbon nanotubes and graphene) are summarized. Especially,the research direction and methods of traditional carbon-based fillers are analyzed,and the superiority of new carbon-based fillers is explained. Secondly,the fundamental principles and application scopes of several main conductive mechanisms are summarized from both macro and micro levels. And the limitation of current research methods for ink conductive properties is pointed out,which describe qualitatively rather than evaluate quantitatively. Finally,the achievements and applications of two new carbon-based conductive ink fillers are introduced. Especially,the key technical problems to be solved at present in application of carbon nanotubes and graphene fillers are proposed,and the research focus and tendency in the future are summarized.