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http://dx.doi.org/10.6111/JKCGCT.2018.28.2.069

Crystal growth of nanosized α-Fe2O3 particles in frit  

Hiroaki-Katsuki, Hiroaki-Katsuki (Korea Institute of Ceramic Engineering & Technology (KICET))
Choi, Eun-Kyoung (Korea Institute of Ceramic Engineering & Technology (KICET))
Lee, Won-Jun (Korea Institute of Ceramic Engineering & Technology (KICET))
Moon, Won-Jin (Korea Basic Science Institute (KBSI))
Kim, Ung-Soo (Korea Institute of Ceramic Engineering & Technology (KICET))
Hwang, Kwang-Taek (Korea Institute of Ceramic Engineering & Technology (KICET))
Cho, Woo-Seok (Korea Institute of Ceramic Engineering & Technology (KICET))
Abstract
Crystal growth of ${\alpha}-Fe_2O_3$ nanosized particles of 80~90 nm in size, which were hydrothermally prepared from 0.03 M $FeCl_3$ solution at $100^{\circ}C$, was investigated in Pb-containing and Pb-free frit. By heating ${\alpha}-Fe_2O_3$ nanosized particles in two frits at $800^{\circ}C$, the average diameter of particles in frits was increased to 200~210 nm and 150~160 nm, respectively, and the crystal growth due to the aggregation and sintering of several ${\alpha}-Fe_2O_3$ particles was observed. Formation ratios of larger particles over 100 nm in diameter were 54 % in Pb-free frit and 85 % in Pb-containing frit. After heating ${\alpha}-Fe_2O_3$ particles in frits at $800^{\circ}C$, 7~9 nm in average diameter of pores were formed in particles. Theses pores were derived from the porous structure of original ${\alpha}-Fe_2O_3$ particles and confined in particles during sintering.
Keywords
Nanosized ${\alpha}-Fe_2O_3$; Pb-containing frit; Pore formation; Crystal growth; Raw material;
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Times Cited By KSCI : 3  (Citation Analysis)
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