Developing complementary supercritical fluid chromatographic methods for a high throughput purification process

Detta är en Master-uppsats från Karlstads universitet

Sammanfattning: Supercritical fluid chromatography (SFC) is an expanding chromatographic technique that is part of the evolving field of green chemistry due to its short run times and use of non-toxic solvents in combination with recycled CO2. The use of a suitable column is essential for separation science in general and there is a wide variety of SFC compatible columns available on the market. In collaboration with the AstraZeneca Gothenburg Separation Science Laboratory (SSL), an investigation of 25 stationary phases in combination with four different mobile phases was conducted in order to evaluate interactions between the mobile phase, stationary phase and analytes. The aim was to find a new column set, able to operate with a wide range of molecules at both analytical and preparative scale. The 36 compounds analysed were chosen to represent the chemical space suitable for current and foreseen compounds of interest within AstraZeneca. Furthermore, to mitigate the risk of degradation of sensitive compounds in basic conditions, different combinations of basic stationary phases and neutral mobile phases were investigated.The study was performed using a Waters Acquity UPC2 system equipped with a photodiode array (PDA) detector and a single quadrupole detector (SQD). The data was gathered by Empower 3 and analysed using statistical methods to evaluate corelations and orthogonality with the help of Python. Visualisations were produced using Pandas, XLstat and SIMCA.The results evaluated retention time, symmetry factor, distribution of retention times of compounds over the columns, and DMSO retention. The results showed that MeOH and the basic additive NH3 included in the mobile phase composition provided the shortest retention times, best peak symmetry and distribution of compounds. It was concluded that Kromasil 2EP, Kromasil Diol, DC Pak PBT, and Kromasil NH2 columns represent a diverse set for the intended chemical space. They all also operate with good results without additive, for the compounds used.

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