Abstract
Mono-dispersed polyamide 6(Nylon 6) micro-particles sized in $4{\sim}5\;{\mu}m$ diameter were prepared by dispersion polymerization of ${\varepsilon}-caprolactam$ in liquid paraffin as a dispersion medium. Potassium metal(K) as a catalyst was separately added twice over the anionic ring-opening polymerization of ${\varepsilon}-caprolactam$. The size, shape, and size-distribution of prepared particles were varied with the concentration of anti-coagulant as well as the amount of initiator and catalyst. As the initiator concentration was in the range of $0.97{\sim}1.17\;wt%$ in monomer, about 90.6% of yield was accomplished. In addition, the highest yield of well-spherically shaped micro-particles was achieved by adding about $1.3{\sim}1.4\;wt%$ of catalyst.
촉매인 potassium(K)을 2회 분할 투입하는 음이온 개환중합반응으로 ${\varepsilon}-caprolactam$을 분산매인 liquid paraffin 내에서 분간 중합하여 $4{\sim}7\;{\mu}m$의 직경을 가지는 단분산된 구형의 polyamide 6 (Nylon 6) micro-particle를 제조하였다. 융착 방지제의 농도, 촉매의 양, 개시제의 양에 따라 생성된 입자 크기, 형태, 그리고 분포의 변화를 비교 분석하였다. 그 결과 개시제인 $PCl_3$의 양이 단량체의 $0.97{\sim}1.17\;wt%$일 때 약 90.6%의 수율을 얻었으며, 또한 촉매를 $1.3{\sim}1.4\;wt%$ 정도로 투입하였을 경우 가장 안정된 구형의 미세입자가 제조되고 높은 수율이 얻어짐을 알 수 있었다.