Wavy Graphene-Like Network Forming during Pyrolysis of Polyacrylonitrile into Carbon Fiber

被引:12
|
作者
Ishikawa, Toru [1 ]
Tanaka, Fumihiko [1 ,7 ]
Kurushima, Kosuke [2 ]
Yasuhara, Akira [3 ]
Sagawa, Ryusuke [3 ]
Fujita, Tatsuya [4 ]
Yonesaki, Ryohei [4 ]
Iseki, Katsuhiko [5 ]
Nakamuro, Takayuki [6 ]
Harano, Koji [6 ,8 ]
Nakamura, Eiichi [6 ]
机构
[1] Toray Industries Ltd, Composite Mat Res Labs, Masaki, Ehime 7913193, Japan
[2] Toray Res Ctr, Otsu, Shiga 5208567, Japan
[3] JEOL Ltd, Akishima, Tokyo 1968558, Japan
[4] Toray Industries Ltd, Pharmaceut Res Labs, Kamakura, Kanagawa 2488555, Japan
[5] Toray Industries Ltd, Technol Ctr, Otsu, Shiga 5208558, Japan
[6] Univ Tokyo, Dept Chem, Tokyo 1130033, Japan
[7] Toray Industries Ltd, Torayca Tech Dept, Masaki, Ehime 7913193, Japan
[8] Natl Inst Mat Sci, Ctr Basic Res Mat, Tsukuba, Ibaraki 3050044, Japan
关键词
ORGANIC-MOLECULES; MESOPHASE PITCH; RESOLUTION; MICROSTRUCTURES; CARBONIZATION; MECHANISM; STRENGTH; KINETICS; EVENTS; RANGE;
D O I
10.1021/jacs.3c02504
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Carbon fiber (CF) obtained by pyrolysis of polyacrylonitrile(PAN-CF)surpasses metals in properties suitable for diverse applications suchas aircraft manufacture and power turbine blades. PAN-CF obtainedby pyrolysis at 1200-1400 degrees C shows a remarkably high tensilestrength of 7 GPa, much higher than pitch-based CF (pb-CF) consistingof piles of pure graphene networks. However, little information hasbeen available on the atomistic structure of PAN-CF and on how itforms during pyrolysis. We pyrolyzed an acrylonitrile 9-mer in a carbonnanotube, monitored the course of the reaction using atomic-resolutionelectron microscopy and Raman spectroscopy, and found that this oligomerforms a thermally reactive wavy graphene-like network (WGN) at 1200-1400 degrees C during slow graphitization taking place between 900 and 1800 degrees C. Ptychographic microscopic analysis indicated that such materialconsists of 5-, 6-, and larger-membered rings; hence, it is not flatbut wavy. The experimental data suggest that, during PAN-CF manufacturing,many layers of WGN hierarchically pile up to form a chemically andphysically interdigitated noncrystalline phase that resists fractureand increases the tensile strength-the properties expectedfor high-entropy materials. pb-CF using nearly pure carbon startingmaterial, on the other hand, forms a crystalline graphene networkand is brittle.
引用
收藏
页码:12244 / 12254
页数:11
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