Active vacuum brazing of CNT films to metal substrates for superior electron field emission performance

被引:12
作者
Longtin, Remi [1 ]
Sanchez-Valencia, Juan Ramon [1 ,2 ]
Shorubalko, Ivan [1 ]
Furrer, Roman [1 ]
Hack, Erwin [1 ]
Elsener, Hansrudolf [1 ]
Groening, Oliver [1 ]
Greenwood, Paul [3 ]
Rupesinghe, Nalin [3 ]
Teo, Kenneth [3 ]
Leinenbach, Christian [1 ]
Groening, Pierangelo [1 ]
机构
[1] Empa, Swiss Fed Labs Mat Sci & Technol, CH-8600 Dubendorf, Switzerland
[2] CSIC US, Inst Ciencia Mat Sevilla, Nanotechnol Surfaces Lab, E-41092 Seville, Spain
[3] AIXTRON Ltd, Cambridge CB24 4FQ, England
基金
瑞士国家科学基金会;
关键词
carbon nanotubes; brazing; field emission; CARBON NANOTUBES; RESIDUAL-STRESSES; SHEAR-STRENGTH; DIAMOND; EMITTERS; CU; MICROSTRUCTURE; NANOCOMPOSITE; PARAMETERS; CATHODES;
D O I
10.1088/1468-6996/16/1/015005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The joining of macroscopic films of vertically aligned multiwalled carbon nanotubes (CNTs) to titanium substrates is demonstrated by active vacuum brazing at 820 degrees C with a Ag-Cu-Ti alloy and at 880 degrees C with a Cu-Sn-Ti-Zr alloy. The brazing methodology was elaborated in order to enable the production of highly electrically and thermally conductive CNT/metal substrate contacts. The interfacial electrical resistances of the joints were measured to be as low as 0.35 Omega. The improved interfacial transport properties in the brazed films lead to superior electron fieldemission properties when compared to the as-grown films. An emission current of 150 mu A was drawn from the brazed nanotubes at an applied electric field of 0.6 V mu m(-1). The improvement in electron field-emission is mainly attributed to the reduction of the contact resistance between the nanotubes and the substrate. The joints have high re-melting temperatures up to the solidus temperatures of the alloys; far greater than what is achievable with standard solders, thus expanding the application potential of CNT films to high-current and high-power applications where substantial frictional or resistive heating is expected.
引用
收藏
页数:11
相关论文
共 50 条
[31]   Stable electron field emission from carbon nanotubes emitter transferred on graphene films [J].
Zhao, Ning ;
Chen, Jing ;
Qu, Ke ;
Khan, Qasim ;
Lei, Wei ;
Zhang, Xiaobing .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2015, 72 :84-88
[32]   Phase transformation of diamond films during electron field emission [J].
Sun, Z ;
Chen, JS ;
Li, YJ ;
Tay, BK ;
Lau, SP ;
Chen, GY .
APPLIED SURFACE SCIENCE, 2001, 173 (3-4) :282-289
[33]   Fabrication and field emission performance of arrays of vacuum microdiodes containing CuO nanowire emitters grown directly on glass without a catalyst [J].
Shao PengRui ;
Deng ShaoZhi ;
Chen Jun ;
Xu NingSheng .
CHINESE SCIENCE BULLETIN, 2011, 56 (09) :906-911
[34]   CVD nanographite films covered by ALD metal oxides: structural and field emission properties [J].
Ismagilov, Rinat R. ;
Tuyakova, Feruza T. ;
Kleshch, Victor I. ;
Obraztsova, Ekaterina A. ;
Obraztsov, Alexander N. .
PHYSICA STATUS SOLIDI C: CURRENT TOPICS IN SOLID STATE PHYSICS, VOL 12, NO 7, 2015, 12 (07) :1022-1027
[35]   Soluble carbon nanotube films treated using a hydrogen plasma for uniform electron field emission [J].
Yu, K ;
Zhu, ZQ ;
Xu, M ;
Li, Q ;
Lu, W ;
Chen, Q .
SURFACE & COATINGS TECHNOLOGY, 2004, 179 (01) :63-69
[36]   The field emission of vacuum filtered graphene films reduced by microwave [J].
Wang, Kai ;
Feng, Tao ;
Qian, Min ;
Ding, Hui ;
Chen, Yiwei ;
Sun, Zhuo .
APPLIED SURFACE SCIENCE, 2011, 257 (13) :5808-5812
[37]   Effect of vacuum level on field emission from nanographite films [J].
E. A. Vasil’eva ;
V. I. Kleshch ;
A. N. Obraztsov .
Technical Physics, 2012, 57 :1003-1007
[38]   Microstructure and field electron emission properties of boron doped diamond films [J].
Zou, Y. S. ;
Li, Z. X. ;
Yang, H. .
SURFACE ENGINEERING, 2011, 27 (04) :294-299
[39]   Field emission CNT-based electron focusing system for terahertz TWT [J].
Burtsev, A. A. ;
Bushuev, N. A. ;
Grigoriev, Yu A. ;
Danilushkin, A., V ;
Pavlov, A. A. ;
Kitsyuk, E. P. .
2017 EIGHTEENTH INTERNATIONAL VACUUM ELECTRONICS CONFERENCE (IVEC), 2017,
[40]   Crack-Assisted Field Emission Enhancement of Carbon Nanotube Films for Vacuum Electronics [J].
Yi, Chunrong ;
Wu, Han ;
Li, Jun ;
Song, Yujie ;
Song, Yenan ;
Chen, Xiaohong ;
Wei Ou-Yang .
ACS APPLIED NANO MATERIALS, 2019, 2 (12) :7803-7809