Chieh-Ming Hsieh

Affiliations: 
chemical engineering National Taiwan University, Taipei, Taipei City, Taiwan 
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"Chieh-Ming Hsieh"
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Publications

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Sodeifian G, Hsieh CM, Masihpour F, et al. (2024) Determination of morphine sulfate anti-pain drug solubility in supercritical CO with machine learning method. Scientific Reports. 14: 22370
Bell IH, Mickoleit E, Hsieh CM, et al. (2020) A Benchmark Open-Source Implementation of COSMO-SAC. Journal of Chemical Theory and Computation
Cai Z, Hsieh C. (2020) Prediction of solid solute solubility in supercritical carbon dioxide with and without organic cosolvents from PSRK EOS The Journal of Supercritical Fluids. 158: 104735
Cai Z, Liang H, Chen W, et al. (2020) First-principles prediction of solid solute solubility in supercritical carbon dioxide using PR+COSMOSAC EOS Fluid Phase Equilibria. 522: 112755
Liang H, Li J, Wang L, et al. (2019) Improvement to PR+COSMOSAC EOS for Predicting the Vapor Pressure of Nonelectrolyte Organic Solids and Liquids Industrial & Engineering Chemistry Research. 58: 5030-5040
Wang L, Hsieh C, Lin S. (2018) Prediction of Gas and Liquid Solubility in Organic Polymers Based on the PR+COSMOSAC Equation of State Industrial & Engineering Chemistry Research. 57: 10628-10639
Chen C, Wang L, Hsieh C, et al. (2018) Prediction of solid-liquid-gas equilibrium for binary mixtures of carbon dioxide + organic compounds from approaches based on the COSMO-SAC model The Journal of Supercritical Fluids. 133: 318-329
Vrabec J, Bernreuther M, Bungartz H, et al. (2018) SkaSim - Skalierbare HPC-Software für molekulare Simulationen in der chemischen Industrie Chemie Ingenieur Technik. 90: 295-306
Muñoz-Muñoz YM, Hsieh CM, Vrabec J. (2017) Understanding the Differing Fluid Phase Behavior of Cyclohexane + Benzene and Their Hydroxylated or Aminated Forms. The Journal of Physical Chemistry. B
Fingerhut R, Chen W, Schedemann A, et al. (2017) Comprehensive Assessment of COSMO-SAC Models for Predictions of Fluid-Phase Equilibria Industrial & Engineering Chemistry Research. 56: 9868-9884
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