Preparation of amorphous nano-boron powder with high activity by combustion synthesis

Zhi-he Dou , Ting-an Zhang , Ji-cheng He , Yang Huang

Journal of Central South University ›› 2014, Vol. 21 ›› Issue (3) : 900 -903.

PDF
Journal of Central South University ›› 2014, Vol. 21 ›› Issue (3) : 900 -903. DOI: 10.1007/s11771-014-2016-2
Article

Preparation of amorphous nano-boron powder with high activity by combustion synthesis

Author information +
History +
PDF

Abstract

The preparation process of amorphous nanometer boron powders through combustion synthesis was investigated, and the effects of the reactant ratio, the heating agent and the milling rate on the activity and particle size of amorphous boron powders were studied. The results show that the boron powders exist in the form of an amorphous phase which has the crystallinity lower than 30.4%, and the particle size of boron powder decreases with an increase of the high-energy ball milling rate. The purity of amorphous boron powder is 94.8% and particle sizes are much smaller than 100 nm when the mass ratio of B2O3/Mg/KClO3 is 100:105:17 and the ball milling time is 20 min with the milling rate of 300 r/min. At the same time, the amorphous boron nano-fibers appear in the boron powders.

Keywords

amorphous nano-boron powder / high activity / combustion synthesis / high-energy ball milling

Cite this article

Download citation ▾
Zhi-he Dou, Ting-an Zhang, Ji-cheng He, Yang Huang. Preparation of amorphous nano-boron powder with high activity by combustion synthesis. Journal of Central South University, 2014, 21(3): 900-903 DOI:10.1007/s11771-014-2016-2

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

SiberchicotB, ClerouinJ. An equation of state of amorphous β-boron under high pressure [J]. Solid-Solid Phase Transformations in Inorganic Materials, 2011, 172/173/174: 1220-1221

[2]

TilekarK V, GajbhiyeV P, PrasanthH, SomanT. Preparation of high purity amorphous boron powder [J]. Defence Science Journal, 2005, 55(4): 471-475

[3]

WuJ-j, ZhaiY-c, ZhangG-l, YangB, DaiY-nian. Preparation of amorphous boron powder by magnesiothermic reduction of B2O3 and microstructural analysis of products [J]. Journal of Northeastern University, 2009, 30(S2): 216-219

[4]

PangW-q, ZhangJ-q, ZhangQ-f, HuS-q, GuoJ-ying. Coating of boron particles and combustion residue analysis of boron-based solid propellants [J]. Journal of Solid Rocket Technology, 2006, 29(3): 204-207

[5]

WangP, OrimoS, FujiiH. Characterization of hydrogenated amorphous boron by a combination of infrared absorption spectroscopy and thermal analyses [J]. Journal of Alloys and Compounds, 2003, 359(1/2): L1-L3

[6]

Abu-hamedT, KarniJ, EpsteinM. The use of boron for thermochemical storage and distribution of solar energy [J]. Solar Energy, 2007, 81(1): 93-101

[7]

WangP, OrimoS, TanabeK, FujiiH. Hydrogen in mechanically milled amorphous boron [J]. Journal of Alloys and Compounds, 2003, 350(1/2): 218-221

[8]

DouZ-h, ZhangT-a, WangY-li. Primary research on preparation of boron powder by self-propagating high-temperature synthesis with a stage of metallurgy [J]. Journal of Northeastern University: Natural Science, 2005, 26(1): 63-66

[9]

WuJ-j, ZhaiY-c, ZhangG-l, LiuD-c, XieK-q, DaiY-nian. Leaching of combustion products in preparing amorphous boron powder by magnesiothermic reduction [J]. Journal of Northeastern University, 2009, 30S2: 6-10

[10]

SongM-z, AnH, ZhaoJun. Preparation of boron by molten-salt electrolysis [J]. Liaoning Chemical Industry, 2004, 33(8): 469-470

[11]

WangY Q, DuanX F, CaoL M, LiG, WangW K. Application of energy-filtering transmission electron microscopy to characterize amorphous boron nanowires [J]. Journal of Crystal Growth, 2002, 244: 123-128

[12]

ShalamberidzeS O, KalandadzeG I, KhulelidzeD E, TsurtsumiaB D. Production of α-rhombohedral boron by amorphous boron crystallization [J]. Journal of Solid State Chemistry, 2000, 154(1): 199-203

[13]

BaoL-h, ZhangJ-x, ZhouS-l, DouZ-he. The effect of precursor boron nanopowder on the microstructure and emission properties of LaB6 cathode materials [J]. Physica Status Solidi (c) Current Topics in Solid State Physics, 2012, 9(1): 11-14

[14]

ZhuD M, KisiE. Synthesis and characterization of boron/boron oxide nanorods [J]. Journal of the Australian Ceramic Society, 2009, 45(2): 49-53

[15]

NorgiN, NodaT, TanakaS. Phonen properties of isotopically modified β rhombohedral boron [J]. J Solid State Chem, 2000, 154: 296-30

AI Summary AI Mindmap
PDF

96

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/