Fabrication, characterization and applications of novel nanoheater structures

被引:24
|
作者
Gu, Zhiyong [1 ]
Cui, Qingzhou [1 ]
Chen, Julie [2 ]
Buckley, Jacqueline [2 ]
Ando, Teiichi [3 ]
Erdeniz, Dinc [3 ]
Wong, Peter [4 ]
Hadjiafxenti, Anastasia [5 ]
Epaminonda, Panos [5 ]
Gunduz, Ibrahim Emre [3 ]
Rebholz, Claus [5 ]
Doumanidis, Charalabos C. [5 ]
机构
[1] Univ Massachusetts Lowell, Dept Chem Engn, Lowell, MA 01854 USA
[2] Univ Massachusetts Lowell, Dept Mech Engn, Lowell, MA 01854 USA
[3] Northeastern Univ, Dept Mech & Ind Engn, Boston, MA 02115 USA
[4] Tufts Univ, Dept Mech Engn, Medford, MA 02155 USA
[5] Univ Cyprus, Dept Mech & Mfg Engn, Nicosia, Cyprus
来源
基金
美国国家科学基金会;
关键词
Reactive nanostructures; Galvanic replacement reaction; Ultrasonic powder consolidation; Ball milling; Micro-joining; Electronics assembly; NI3AL INTERMETALLIC COMPOUND; SOLID-STATE REACTIONS; COMBUSTION SYNTHESIS; NI; EVOLUTION; POWDERS; PHASE;
D O I
10.1016/j.surfcoat.2012.06.095
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nanoheaters are reactive nanostructures that can generate localized heat through controlled ignition. Besides the widely used nanofoil structure with multiple alternative Al-Ni layers, various new nanostructures have been fabricated in the last several years, including consolidated films, bimetallic nanoparticles and nanowires, and ball milled micro/nano powders. In this paper, we demonstrate the (1) Synthesis of Al-Ni bimetallic nanoparticles by a galvanic replacement reaction method using Al nanoparticle templates; (2) Fabrication of Al-Ni nanowire structures by a two-step process involving electrodeposition and thermal evaporation; (3) Fabrication of Al-Ni composites by a novel ultrasonic powder consolidation method, using Al and Ni nanoparticles as source materials and (4) Synthesis of nanostructured Al-Ni powders by low energy ball milling with microscale Al and Ni powders. The structure and compositions of the nanoheater structures have been characterized by scanning electron microscopy and transmission electron microscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction. The thermal characteristics of the samples were studied using differential scanning calorimetry. These novel nanoheater structures have great potential to be used in micro-joining, microelectronics assembly, and flexible electronics bonding. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:493 / 502
页数:10
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