TY - JOUR
T1 - Better preparation process on formation of BaFe12O19 nanoparticles
AU - Huang, Ying
AU - Wang, Qijie
AU - Wang, Guangdong
AU - Huang, Fei
AU - Xiong, Jia
PY - 2005/4
Y1 - 2005/4
N2 - Refs. 5 and 7 proposed a method for synthesizing ultrafine barium ferrite (BaFe12O19) by sol-gel technique that is excellent except that, in our opinion, they used ammonia as precipitating agent. We found experimentally that NaOH is better than ammonia except that a new problem is brought in, i.e., it brings in unwelcome sodium ions. We present a method that employs NaOH as precipitating agent without bringing in unwelcome sodium ions. BaFe12O19 nanoparticles were prepared for using sol-gel technique. Influence of preparation process on formation process of barium ferrite was studied. Experimental results show that, after the gel had been preheated at 500°C for 5 h and washed by water to eliminate sodium ions and then heat-treated at 900°C for 4 h, we could get high purity nanoparticles of BaFe12O19 with a coercive force of 29.95×103 A/m, and a specific saturation magnetization Ms of 68.6 A·m2·kg-1 with Fe/Ba=11.2. By selecting a different Fe/Ba and prolonging preheating and heat-treating time, we found it possible to make washing away sodium ions with water unnecessary. After the gel had been preheated at 500°C for 6 h and then heat-treated at 900°C for 6 h, we could get high purity nanoparticles of BaFe12O19 with a coercive force of 31.26×103 A/m, and Ms=70.12 A·m2·kg-1 with Fe/Ba=11.4. Besides, Ms=70.12 A·m2·kg-1 is superior to Ms=62.7 A·m2·kg-1 and Ms=65 A·m2· kg-1 attained by products of Japanese firms Toshiba and Toda respectively.
AB - Refs. 5 and 7 proposed a method for synthesizing ultrafine barium ferrite (BaFe12O19) by sol-gel technique that is excellent except that, in our opinion, they used ammonia as precipitating agent. We found experimentally that NaOH is better than ammonia except that a new problem is brought in, i.e., it brings in unwelcome sodium ions. We present a method that employs NaOH as precipitating agent without bringing in unwelcome sodium ions. BaFe12O19 nanoparticles were prepared for using sol-gel technique. Influence of preparation process on formation process of barium ferrite was studied. Experimental results show that, after the gel had been preheated at 500°C for 5 h and washed by water to eliminate sodium ions and then heat-treated at 900°C for 4 h, we could get high purity nanoparticles of BaFe12O19 with a coercive force of 29.95×103 A/m, and a specific saturation magnetization Ms of 68.6 A·m2·kg-1 with Fe/Ba=11.2. By selecting a different Fe/Ba and prolonging preheating and heat-treating time, we found it possible to make washing away sodium ions with water unnecessary. After the gel had been preheated at 500°C for 6 h and then heat-treated at 900°C for 6 h, we could get high purity nanoparticles of BaFe12O19 with a coercive force of 31.26×103 A/m, and Ms=70.12 A·m2·kg-1 with Fe/Ba=11.4. Besides, Ms=70.12 A·m2·kg-1 is superior to Ms=62.7 A·m2·kg-1 and Ms=65 A·m2· kg-1 attained by products of Japanese firms Toshiba and Toda respectively.
KW - Barium ferrite (BaFeO)
KW - Sol-gel
KW - Specific saturation magnetization
UR - http://www.scopus.com/inward/record.url?scp=20544439137&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:20544439137
SN - 1000-2758
VL - 23
SP - 193
EP - 196
JO - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
JF - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
IS - 2
ER -