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Effect of Alumina Nanooxide Application on Nitrendipine Manufacturing Process
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HOME > J Korean Powder Metall Inst > Volume 14(2); 2007 > Article
알루미나 나노산화물이 Nitrendipine 제조 공정에 미치는 영향
채은진, 엄영랑, 한병선, 이창규, 박상언
Effect of Alumina Nanooxide Application on Nitrendipine Manufacturing Process
E.J. Chae, Y.R. Uhm, B.S. Han, C.K. Rhee, S.E. Park
Journal of Korean Powder Metallurgy Institute 2007;14(2):127-131
DOI: https://doi.org/10.4150/KPMI.2007.14.2.127
1한국원자력 연구소, 원자력나노소재응용랩
2한국원자력 연구소, 원자력나노소재응용랩
3한국원자력 연구소, 원자력나노소재응용랩
4한국원자력 연구소, 원자력나노소재응용랩
5인하대학교, 물리화학부
1Department of Nuclear Nanomaterials Development Lab., Korea Atomic Energy Research Institute (KAERI)
2Department of Nuclear Nanomaterials Development Lab., Korea Atomic Energy Research Institute (KAERI)
3Department of Nuclear Nanomaterials Development Lab., Korea Atomic Energy Research Institute (KAERI)
4Department of Nuclear Nanomaterials Development Lab., Korea Atomic Energy Research Institute (KAERI)
5Department of Physical Chemistry In-ha University
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The alumina nano powders synthesized by levitational gas condensation (LGC) method were applied to catalyst in manufacturing process of Hanzsch reaction for Nitrendipine. The L-tartaric acid on the surface is carried out with participation of carbonyl fragments, O-H, C-H bonds which affects stereo selectivity, yield on the reagents positively. From the analysis of the IR-spectroscopy, the carbonyl fragments, O-H, and C-H bond were created by the catalytic reaction. From the analysis of the rR-spectroscopy, the carbonyl fragments, O-H, and C-H bond were created by the catalytic reaction. The newly created bonds made a chiral center on the final product.

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