Organic chemistry syntheses often use polar, high boiling point solvents to facilitate high temperature reactions. However, these solvents also can complicate down-stream compound purification, either by evaporation, crystallization, or even flash chromatography.
To isolate the synthetic product from this type of reaction mixture, it must be extracted from the polar reaction solvent. Conventional techniques for this use breakable glass separatory funnels and an immiscible solvent in which the synthetic product hopefully has greater solubility than the reaction solvent. One popular organic extracting solvent is dichloromethane (DCM) because it is denser than most other solvents and solubilizes many organic compounds.
Proper separatory funnel extraction requires many steps [1] which are condensed below.
-This process requires ~22 steps (including the repeated steps), several solvents, is time consuming, and hinders workflow.
This post provides insight into a greener, more efficient alternative to glass separatory funnels – recyclable, polypropylene phase separators, Figure 1.
Figure 1. A Biotage® Phase Separator installed on a Biotage® Gravity Rack.
These polypropylene phase separators contain a hydrophobic frit that only allows organic solvents to pass and retains water. Multiple extraction cycles with the same phase separator are possible eliminating the need to “burp” or vent the separatory funnel every extraction. Well-defined aqueous/organic interfaces eliminate the need to stop the extraction just before the solvent interface passes through the stopcock. When finished, the phase separator can be dried and recycled, eliminating the need to clean the device with organic solvents, water, and detergents.
To evaluate the phase separator extraction efficiency, I created my own synthetic product from the reaction of succinic acid plus benzylamine in DMSO using a Biotage® Initiator+ to create N,N’-dibenzylsuccinamide.
To evaluate the phase separator's effectiveness in extracting my product from the DMSO reaction mix, I performed the following steps…
Ten steps, the longest of which is the 10-minute flash purification. Nothing to clean, no need to monitor separatory funnel flow rate and solvent interface, and no expensive, breakable glassware. See video below...
I evaluated the extraction effectiveness using reversed-phase flash chromatography. The chromatography showed successful extraction, and separation, of several compounds from the DMSO reaction solvent, Figure 2.
Figure 2. DCM extract flash chromatography shows the presence of two major peaks and a few minor by-products.
To determine the extraction efficiency, the aqueous portion was also subjected to flash chromatography using the same method and showed nearly complete extraction of the reaction products, Figure 3.
Figure 3. Upper aqueous layer reversed-phase flash chromatography shows minimal amounts of reaction by-products.
Because the same recyclable extraction vessel allows multiple extractions of the same reaction mixture, which take only seconds, these phase separators are used by many pharmaceutical companies for synthetic research, increasing their productivity while reducing research costs.
For more information on Biotage workup products, click the link below.
[1] https://chem.libretexts.org/Bookshelves/Organic_Chemistry/Book%3A_Organic_Chemistry_Lab_Techniques_