Park, H.; Cha, K.-H.; Hong, S.H.; Abuzar, S.M.; Ha, E.-S.; Kim, J.-S.; Kim, M.-S.; Hwang, S.-J.
Melt Amorphisation of Orlistat with Mesoporous Silica Using a Supercritical Carbon Dioxide: Effects of Pressure, Temperature, and Drug Loading Ratio and Comparison with Other Conventional Amorphisation Methods. Pharmaceutics 2020, 12, 377.
https://doi.org/10.3390/pharmaceutics12040377
AMA Style
Park H, Cha K-H, Hong SH, Abuzar SM, Ha E-S, Kim J-S, Kim M-S, Hwang S-J.
Melt Amorphisation of Orlistat with Mesoporous Silica Using a Supercritical Carbon Dioxide: Effects of Pressure, Temperature, and Drug Loading Ratio and Comparison with Other Conventional Amorphisation Methods. Pharmaceutics. 2020; 12(4):377.
https://doi.org/10.3390/pharmaceutics12040377
Chicago/Turabian Style
Park, Heejun, Kwang-Ho Cha, Seung Hyeon Hong, Sharif Md Abuzar, Eun-Sol Ha, Jeong-Soo Kim, Min-Soo Kim, and Sung-Joo Hwang.
2020. "Melt Amorphisation of Orlistat with Mesoporous Silica Using a Supercritical Carbon Dioxide: Effects of Pressure, Temperature, and Drug Loading Ratio and Comparison with Other Conventional Amorphisation Methods" Pharmaceutics 12, no. 4: 377.
https://doi.org/10.3390/pharmaceutics12040377
APA Style
Park, H., Cha, K.-H., Hong, S. H., Abuzar, S. M., Ha, E.-S., Kim, J.-S., Kim, M.-S., & Hwang, S.-J.
(2020). Melt Amorphisation of Orlistat with Mesoporous Silica Using a Supercritical Carbon Dioxide: Effects of Pressure, Temperature, and Drug Loading Ratio and Comparison with Other Conventional Amorphisation Methods. Pharmaceutics, 12(4), 377.
https://doi.org/10.3390/pharmaceutics12040377