Academic literature on the topic 'Pseudo-ternary phase diagram'

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Journal articles on the topic "Pseudo-ternary phase diagram"

1

Yang, Hui Min, Liang Shun Luo, Mei Hui Song, Hai Qun Qi, Chun Yan Wang, and Chuang Yang. "Calculation of Aluminum Equivalent Based on Thermo-Calc Software in Ti-Al-Nb Ternary System." Materials Science Forum 788 (April 2014): 144–49. http://dx.doi.org/10.4028/www.scientific.net/msf.788.144.

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Ti-Al-Nb ternary phase diagrams were calculated by Thermo-Calc software. The analysis of the calculated vertical sections of Ti-Al-Nb phase diagram indicated that when Nb content is fixed at 5at.% and Al content is lower than 52.3at.%, the primary phase would be β phase during solidification. With 10 at.%Nb and Al content lower than 55.8at.%, or with 15 at.%Nb and Al content lower than 56.9at.%, the primary phase would be β phase. The vertical sections of Ti-Al-Nb ternary phase diagram were further simplified into pseudo-Ti-Al binary phase diagram. According to the pseudo-Ti-Al diagram, the expression of the aluminum equivalent was obtained in Ti-Al-5Nb ternary alloys.
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2

Chen, Rong, Genhua Wu, and Qiyun Zhang. "Phase diagram of pseudo-ternary system KAlF4–K3AlF6–KBe2F5." Thermochimica Acta 376, no. 2 (2001): 183–85. http://dx.doi.org/10.1016/s0040-6031(01)00583-4.

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3

Gralak, D., and V. H. Tran. "Magnetic phase diagram of pseudo-ternary solid solution URu1−xPdxGe." Journal of Solid State Chemistry 226 (March 2015): 50–58. http://dx.doi.org/10.1016/j.jssc.2015.01.027.

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4

Kim, Rae, Dong-Jin Jang, Yu Kim, et al. "Flurbiprofen-Loaded Solid SNEDDS Preconcentrate for the Enhanced Solubility, In-Vitro Dissolution and Bioavailability in Rats." Pharmaceutics 10, no. 4 (2018): 247. http://dx.doi.org/10.3390/pharmaceutics10040247.

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The aim of this work was to prepare and optimize a solid self-nanoemulsifying drug delivery system pre-concentrate (SSP) containing water-insoluble flurbiprofen (FL) using a novel pseudo-ternary phase diagram. The pseudo-ternary phase diagram, composed of FL as the drug and dispersion core, Kollisolv MCT 70 as the oil phase, and TPGS (tocopherol polyethylene glycol 1000 succinate) as the surfactant, was constructed for the determination of the SSP region. SSP was investigated in terms of particle size, physical state by differential scanning calorimetry (DSC) and powder X-ray diffraction (PXRD), in vitro dissolution and oral pharmacokinetics in rats. The determined SSP (FL/Kollisolv MCT 70/TPGS = 10/10/80, weight %) in the pseudo-ternary phase diagram had the melting point of 32.37 °C and uniform mean particle size of below 30 nm without any precipitation of FL in the dispersion. In the dissolution test, the SSP exhibited 95.70 ± 3.40% of release at 15 min, whereas the raw FL showed poor dissolution (i.e., 6.75 ± 1.30%) at that time point. In addition, the SSP showed the enhanced oral absorption (i.e., 1.93-fold increase in AUCinfinite) as compared to the suspension group of raw FL. Therefore, the developed SSP would be a promising drug delivery system with excellent solubilization, dissolution, and bioavailability for FL.
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Mihailescu, Florentina Cristina, Marieta Balcan, Monica Elisabeta Maxim, and Dan Florin Anghel. "Combustible Microemulsions with Diesel and Diesel Admixed with Rapeseed Oil." Revista de Chimie 70, no. 9 (2019): 3163–66. http://dx.doi.org/10.37358/rc.19.9.7508.

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Novel results on combustible microemulsions prepared with diesel (D), blends of diesel and rapeseed oil (RSO), and mixtures of eco-friendly amphiphiles are presented. Water solubilization in oil/amphiphile systems was estimated by pseudo-ternary diagrams whereas the phase behavior by Winsor (W) diagrams. The extent of single-phase microemulsion (SPM) area depends on the amphiphile and oil phase composition. The presence of cosurfactant in the anionic-nonionic surfactant mixture increases very much the SPM area, but no effect is observed when half of D is replaced by RSO. In the pseudo-ternary phase diagram, the addition of organic electrolyte decreases the SPM areas. The microemulsions were characterized by the oil/water interfacial tension (gow), and the oil and water solubilization parameters (SPo) and (SPw). The results obtained reveal that the W III microemulsions have minimal goow values, whereas SPo and SPw are maximal. The work connects the phase behavior with the interfacial tension and the solubilization parameters of oil and water and is useful for obtaining and developing optimal microemulsions as alternative fuels.
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Page, Alexander, Anton Van der Ven, P. F. P. Poudeu, and Ctirad Uher. "Origins of phase separation in thermoelectric (Ti, Zr, Hf)NiSn half-Heusler alloys from first principles." Journal of Materials Chemistry A 4, no. 36 (2016): 13949–56. http://dx.doi.org/10.1039/c6ta04957e.

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7

Leite, Clarice C., Ariane V. Zmozinski, Maria Goreti R. Vale, and Márcia M. Silva. "Determination of Fe, Cr and Cu in used lubricating oils by ET AAS using a microemulsion process for sample preparation." Analytical Methods 7, no. 8 (2015): 3363–71. http://dx.doi.org/10.1039/c5ay00128e.

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Samples were prepared as microemulsions investigated through a pseudo-ternary phase diagram. Calibration curves with inorganic standards were used for quantification. The method is accurate, simple, fast, and causes less environmental impact.
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8

Wei, G., M. Hasegawa, M. Ichinose, et al. "Iso-thermal Section of the Phase Diagram of the System Na2MoO4-MoO3-La2O3 at 1073 K." High Temperature Materials and Processes 33, no. 4 (2014): 313–17. http://dx.doi.org/10.1515/htmp-2013-0078.

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9

Chen, Rong, Genhua Wu, and Qiyun Zhang. "ChemInform Abstract: Phase Diagram of Pseudo-Ternary System KAlF4-K3AlF6-KBe2 Fe5." ChemInform 32, no. 48 (2010): no. http://dx.doi.org/10.1002/chin.200148020.

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10

Ghosh, Sajal, Rajesh Ganesan, R. Sridharan, and T. Gnanasekaran. "Investigation on the Phase Diagram of LiCl-KCl-NdCl3 Pseudo-Ternary System." Journal of Phase Equilibria and Diffusion 39, no. 6 (2018): 916–32. http://dx.doi.org/10.1007/s11669-018-0695-3.

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