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Two-Dimensional Co-Compounded Carbonaceous Nanoplates for Rubber Tire Composites with Enhanced Mechanical Properties
ACS Applied Nano Materials ( IF 5.9 ) Pub Date : 2020-06-11 , DOI: 10.1021/acsanm.0c00083
Hyelynn Song 1 , June-Young Chung 2 , Taewoo Kim 3 , Junho Lee 1 , Hakjun Lee 1 , Jae-Do Nam 2 , Hong H. Lee 4 , Yong Hyup Kim 1
Affiliation  

Two-dimensional (2D) materials can offer high exposed surface area and reactive functional groups. Despite the tremendous progresses made in the 2D materials, carbonaceous 2D materials have not seen their light perhaps because of the overwhelming shadow cast by graphene. Here, we introduce a platform for carbonaceous 2D materials that are co-compounded carbonaceous nanoplates (Co-CANPs). Co-compounding carbonaceous nanoplates (CANPs) with another compound are accomplished by a one-pot process, and the synthesized Co-CANP does not require any separation for its use. It was confirmed that the mechanical properties were improved by adding the synthesized Co-CANP as a tire additive, thereby proving its efficacy. The platform introduced here opens the door to organic–inorganic Co-CANPs and also to many component Co-CANPs.

中文翻译:

具有增强的机械性能的二维共混含碳纳米板,用于橡胶轮胎复合材料

二维(2D)材料可以提供高的暴露表面积和反应性官能团。尽管2D材料取得了巨大的进步,但碳质2D材料仍未见光,这可能是由于石墨烯所产生的压倒性阴影所致。在这里,我们介绍了碳2D材料的平台,这些材料是复合碳纳米板(Co-CANP)。将碳素纳米板(CANP)与另一种化合物共混可以通过一锅法完成,合成的Co-CANP不需要任何分离即可使用。证实了通过添加合成的Co-CANP作为轮胎添加剂改善了机械性能,从而证明了其功效。此处介绍的平台为有机-无机Co-CANPs和许多组分Co-CANPs打开了大门。
更新日期:2020-07-24
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