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NTIS 바로가기청정기술 = Clean technology, v.22 no.2, 2016년, pp.75 - 81
박경희 (동아대학교 공과대학 화학공학과) , 이요한 (동아대학교 공과대학 화학공학과) , 장상목 (동아대학교 공과대학 화학공학과) , 김우식 (경희대학교 공과대학 화학공학과) , 김종민 (동아대학교 공과대학 화학공학과)
As the quality of life has improved, the desire for the safety and quality of the foods and drugs has been gradually increasing. For safety and quality management in foods, drugs, health management, agriculture, environmental conservation, and the industrial fields, the demand for quickly and accura...
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Kim, I. H., “Korea-America Pharmaceutical FTA and Chiral Drugs Development,” News & Information for Chem. Eng., 25(4), 354-359 (2007).
Lee, J. K., and Park, T.-J., “HPLC-SMB for Chiral Drugs Optical Separation,” News & Information for Chem. Eng., 21(1), 39-45 (2003).
Kim, Y. H., and Yi, J. H., “Environmental Sensing Technology with Nanotechnology for the Clean Technology,” Clean Technol., 11(2), 75-81 (2005).
Kim, B. M.,“Current Situation of the Bio-Drugs,” News & Information for Chem. Eng., 28(3), 349-354 (2010).
http://blog.naver.com/williamws4/130157003542
Min, H. J, and Kim, M. W., “Global Outlook for Medicines Through IMS Institute,” BioIndustry, 12(88), 1-14 (2014).
http://blog.naver.com/jopd64/220223822331
Kim, Y. S., and Gu, M. B., “Nano-diagnostic and Separation Technology by using Aptamer,” News & Information for Chem. Eng., 26(6), 690-695 (2008).
Nam, H. Y., and Seo, J. W., “Synthesis of Functional Peptoids and Their Applications,” Polym. Sci. Technol., 25(4), 296-301 (2014).
Lim, H.-S., “Peptoid Library and Its Application,” Polym. Sci. Technol., 25(4), 302-306 (2014).
Huangfu, F., Wang, B., and Sun, Y., “Synthesis of Molecularly Imprinted Polymers for Chiral (S)-Ibuprofen and Their Molecular Recognition Mechanism,” Polymer(Korea), 37(3), 288-293 (2013).
Chang, E.-J., Hong, J.-H., Heo, K.-B., Kim, M., and Kim, B.-S., “The Preparation of Chiral Separation Membranes by UV Polymerization and its Properties,” J. Korean Ind. Eng. Chem., 19(3), 287-294 (2008).
Ahn, K.-D., and Kim, J.-M., “Molecularly Imprinted Polymers for Molecular Recognition,” Poly. Sci. Technol., 11(3), 332-338 (2000).
Kim, K.-H., Lee, I.-H., Kang, S.-K., Chang, J.-S., Hwang, J.-S., and Park, S.-E., “R&D Trend on Nanoporous Molecular Sieves and Their Applications,” Prospect. Ind. Chem., 7(6), 33-47 (2004).
Kim, J. M., Chang, S.-M., Muramatsu, H., and Isao, K., “The Principles and Applications of Nano-diagnosis System for a Nano-biosensor,” Korean J. Chem. Eng., 28(4), 987-1008 (2011).
Sim, H. R., Kim, S. H., Lee, J. Y., and Lee, H. J., “Creating Highly Sensitive and Selective Biochip Sensors for the Detection of Organophosphorus/carbamate Pesticides,” J. Korean Ind. Eng. Chem., 20(6), 571-580 (2009).
Oh, B.-K., and Choi, J.-H., “Optical Detection Method Based Protein Chip Technology for Monitoring Environmental Pollutants,” Korean Ind. Chem. News, 14(1), 2-9 (2011).
Guo, H.-S., Kim, J.-M., Kim, S.-J., Chang, S.-M., and Kim, W.-S., “Versatile Method for Chiral Recognition by the Quartz Crystal Microbalance: Chiral Mandelic Acid as the Detection Model,” Langmuir, 25, 648-652 (2009).
Guo, H.-S., Kim, J.-M., Pham, X.-H., Chang, S.-M., and Kim, W.-S., “Predicting the Enantioseparation Efficiency of Chiral Mandelic Acid in Diastereomeric Crystallization Using a Quartz Crystal Microbalance,” Cryst. Growth Des., 11(1), 53-58 (2011).
Kim, J.-M., Lee U.-H., Chang, S.-M., and Park, J. Y., “Development of Real-time Sensitive Chiral Analysis Technique using Quartz Crystal Analyzer,” Sensors and Actuators B, 171-172, 478-485 (2012).
Kim, J.-M., Pham, X.-H., Chang, S.-M., He, X.-K., and Kim, W.-S., “Gravimetric Detection of Theophylline on Pore-structured Molecularly Imprinted Conducting Polymer,” Sensors and Actuators B, 200, 25-30 (2014).
Kim, Y. W., Chang, S. M., and Kim, J. M., “Analysis and Separation via Union of GS Host Molecular and Isomers Molecular using NAC type QCM,” Theories and Appl. Chem. Eng., 20(1), 788 (2014).
Park, J. S., Lee, Y. H., Chang, S. M., and Kim, J. M., “R, S-Mandelic Acid Separation using L-PA Modified Core-shell Structure Magnetic Nanoparticles,” Theories and Appl. Chem. Eng., 20(1), 723 (2014).
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