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NOTE: Deuterated solvents were dried according to literature procedure when necessary, and all other solvents were dried over a series of Grubbs'-type columns12 and degassed prior to use. Potassium 1,2,4-tris(diphenylphosphino)cyclopentadiene [K][(Ph2P)3C5H2] and the N-heterocyclic carbene 1,3,4,5-tetramethylimidazole-2-ylidene (MeNHCMe) were synthesized according to literature procedures and the latter was sublimed prior to use.9,13 Cyclohexene was dried over CaH2, distilled and degassed prior to use. Acetonitrile-d3 (CD3CN) and dichloromethane-d2 (CD2Cl2) were dried over phosphorus pentoxide and degassed prior to use. Diatomaceous earth was dried in an oven at 150 ºC overnight prior to use. All other reagents were used as received.
1. Synthesis of [dppeP][Br]
- Dissolve 1.00 g of 1,2-bis(diphenylphosphino)ethane (dppe) in approximately 40 ml of anhydrous, degassed dichloromethane (DCM) in a 250 ml Schlenk flask, under inert gas, equipped with a rubber septum.
- By syringe or cannula transfer, add 2.53 ml of dry, degassed, cyclohexene to the Schlenk flask containing the stirring solution of dppe.
- To this solution, add 0.26 ml of PBr3 via syringe, dropwise with vigorous stirring. The solution should immediately turn pale yellow, and white precipitate forms after stirring the solution for 20 min. Allow the reaction to stir for several hours or overnight.
- After stirring for several hours or overnight, filter the reaction mixture through a fritted flask topped with a one-inch thick diatomaceous earth plug to remove the precipitate.
- Collect the resulting solution and remove the DCM under vacuum on a Schlenk line.
- To the resulting oil, add approximately 75 ml of tetrahydrofuran (THF) while stirring vigorously (or sonicating) to precipitate the product as a white solid.
- Immediately after the white precipitate forms, collect it via filtration with a fritted flask under an inert atmosphere. Collect the solid immediately, and do not leave the suspension to stir for more than 30 min.
- Once collected, dissolve a small amount of [dppeP][Br] in CD2Cl2 or CDCl3 to obtain 31P, 1H and 13C NMR to confirm purity. [dppeP][Br] can be stored indefinitely in an inert atmosphere, or for several weeks on the benchtop.6
2. Synthesis of [dppeP][BPh4]
- Dissolve 0.5 g of [dppeP][Br] salt in 5 ml of DCM, in a Schlenk flask. Stir the solution under nitrogen gas. Then, add 0.35 g of sodium tetraphenylborate in 5 ml of THF.
- Allow the solution to stir for several hours or overnight, until a fine precipitate forms.
- Centrifuge the suspension to eliminate the precipitate (KBr) and remove the solvent under reduced pressure to yield [dppeP][BPh4] as a white powder.
3. Synthesis of [MeNHCMe2P][BPh4]
- Load a 100 ml Schlenk flask with 0.200 g of MeNHCMe and a stir bar under an inert atmosphere.
- Load a 100 ml round bottom flask with 0.603 g of [dppeP][BPh4] under an inert atmosphere.
- Cannula transfer 20 ml of THF to the Schlenk flask containing 0.200 g of MeNHCMe and begin magnetic stirring.
- Cannula transfer 20 ml of THF to the 100 ml round bottom flask with 0.603 g of [dppeP][BPh4] and stir until dissolved.
- Cannula transfer the solution of [dppeP][BPh4] in THF to the stirring solution of MeNHCMe in THF and allow the yellow solution to stir for 1 hr.
- Concentrate the yellow solution to a third of the original volume (13 ml) under reduced pressure.
- Add diethyl ether (Et2O) (40 ml) to the stirring concentrated solution to initiate precipitation of the yellow product and allow the resultant suspension to stir for 20 min.
- Place a sealed frit fitted attached to a 100 ml Schlenk flask on the Schlenk line and create an inert atmosphere by evacuating the flask using vacuum and refilling the flask with nitrogen from the Schleck line. Evacuate for 5 min and refill with nitrogen 3 times to insure an inert atmosphere.
- Cannula transfer the Et2O suspension into the apparatus and filter the precipitate.
- Wash the precipitate with 10 ml of Et2O three times and allow the precipitate to dry under reduced pressure for 2 hr.
- Optional) Allow the filtrate and washings to evaporate slowly under nitrogen to recrystallize dppe. Wash the crystals with a minimal amount of hexanes, dry, and collect the crystals for re-use.
4. Synthesis of (Ph2P)C5H2(Ph2P)2P
- To a 150 ml Schlenk flask containing 0.484g [dppeP][Br] in an inert atmosphere, add 40 ml of dry, degassed THF.
- Place the Schlenk in a dry-ice/acetone bath to cool the suspension to -78 °C.
- Cannula transfer a THF solution of 0.625g [K][(Ph2P)3C5H2] in a round bottom flask, to the Schlenk flash containing [dppeP][Br].
- When the addition is complete, remove the Schlenk flask from the acetone bath and allow to warm to room temperature. After stirring for 2 hr, the solution will be light yellow with a white precipitate present.
- Transfer the suspension to an air-free fritted filter equipped with a 150 ml Schlenk flask, to remove the white precipitate (KBr).
- Collect the yellow solution and remove the THF under vacuum.
- Add an 80:20 mixture of dry and degassed diethyl ether:pentane to the resulting oil and allow to stir for 20 min.
- Collect the product (Ph2P)C5H2(Ph2P)2P as a pale yellow precipitate by filtering the suspension through an air-free, fritted flask. The remaining ether/pentane solution contains the dppe impurity and may be discarded or the solvent may be removed under vacuum and the dppe collected for further use.