by
Şengün, Duygu, author.
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polarity of the solvents. On the other hand, it was observed that there was no significant effect of the
by
Demirkurt, Begüm, author.
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the commonly used organic solvents. The use of volatile, toxic and flammable organic solvents in the
15.
by
Algan, Müge, author.
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activity. And only β-mercaptoethanol caused a significant change amoung organic solvents. Lastly, that the
by
Dadenov, Saken, author.
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solvents. Water in liquid state under temperature and pressure above boiling point and below the critical
by
Yapaşan, Ece.
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metal salts and organic solvents; while some additives sharply decreased enzyme activity, some additives
by
Özmen Egesoy, Tuğçe, author.
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, several organic solvents were used as desolvating agents. cBSA NPs with an average size around 200 nm were
by
Yıldırım, Barış, author.
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emulsification methods were investigated. Instead of classical toxic and volatile solvents, using ILs in
by
Toygar Türkün, Nihan, author.
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simple method, it is relatively time consuming and prone to human error. Besides, the solvents used in
by
Türker, Esra, author.
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in toxic and harmful solvents that creates the major problem for cell culture applications. To
22.
by
Erdoğan, Ayşegül, author.
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microalgal strains. Freeze-dried microalgae were extracted using different organic solvents and their
by
Karaca, Sıla.
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investigated. The solvation calculations show that, max values are independent of the polarity of the solvents
by
Ebil, Özgenç.
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Alıntı:
solvents. Four experimental sets of membranes containing the same polymer but different solvents and
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