TY - JOUR
T1 - Coprecipitation-based micro-reactor process to synthesize soft-agglomerated ultrafine BiPbSrCaCuO powder with low carbon content
AU - Mao, Chuanbin
AU - Zhou, Lian
AU - Sun, Xiangyun
AU - Wu, Xiaozu
PY - 1997
Y1 - 1997
N2 - A new process, termed coprecipitation-based micro-reactor process (CMP), has been developed to synthesize highly homogeneous ultrafine BiPbSrCaCuO superconductor precursor powder with soft agglomerate and low carbon content. The new process includes three main steps: (1) the ultrafine precipitates with specific composition are prepared by oxalate coprecipitation in a mixed liquid medium with low surface tension; (2) the precipitates are in situ dispersed in the medium; (3) the as-prepared colloidal solution is quickly subjected to heat treatment to get soft-agglomerated BiPbSrCaCuO powder with ultrafine particles (∼ 0.3 μm), low carbon content (< 200 ppm) and typical main phase compositions of (Bi,Pb)2Sr2CaCu2Ox, CaPbO4, CuO, Ca2CuO3, Bi2Sr2CuOx. The typical characteristics of CMP are such that each precipitate particle behaves like a micro-reactor during heat treatment, which leads to the minimization of the probabilities of contact, agglomerate or sintering between particles as compared to the traditional coprecipitation process. The CMP powder can be sintered into highly pure (Bi,Pb)2Sr2Ca2Cu3Ox superconductor in short time.
AB - A new process, termed coprecipitation-based micro-reactor process (CMP), has been developed to synthesize highly homogeneous ultrafine BiPbSrCaCuO superconductor precursor powder with soft agglomerate and low carbon content. The new process includes three main steps: (1) the ultrafine precipitates with specific composition are prepared by oxalate coprecipitation in a mixed liquid medium with low surface tension; (2) the precipitates are in situ dispersed in the medium; (3) the as-prepared colloidal solution is quickly subjected to heat treatment to get soft-agglomerated BiPbSrCaCuO powder with ultrafine particles (∼ 0.3 μm), low carbon content (< 200 ppm) and typical main phase compositions of (Bi,Pb)2Sr2CaCu2Ox, CaPbO4, CuO, Ca2CuO3, Bi2Sr2CuOx. The typical characteristics of CMP are such that each precipitate particle behaves like a micro-reactor during heat treatment, which leads to the minimization of the probabilities of contact, agglomerate or sintering between particles as compared to the traditional coprecipitation process. The CMP powder can be sintered into highly pure (Bi,Pb)2Sr2Ca2Cu3Ox superconductor in short time.
KW - BiPbSrCaCuO
KW - Coprecipitation-based micro-reactor process (CMP)
KW - Superconductor
UR - http://www.scopus.com/inward/record.url?scp=0031192150&partnerID=8YFLogxK
U2 - 10.1016/s0921-4534(97)00146-9
DO - 10.1016/s0921-4534(97)00146-9
M3 - 文章
AN - SCOPUS:0031192150
SN - 0921-4534
VL - 281
SP - 35
EP - 44
JO - Physica C: Superconductivity and its Applications
JF - Physica C: Superconductivity and its Applications
IS - 1
ER -