The Industrial Phase-Transfer Catalysis Experts

PTC Tip of the Month E-Newsletter

PTC Catalyst of the Month - October 2025

Chiral PTC with Transition Metal Catalysts

By Marc Halpern, the leading expert in industrial phase-transfer catalysis.

Many thanks to Dr. Peter G. M. Wuts, the world-renowned author and expert in organic synthesis (click here for Wuts Chemical Consulting)  for suggesting that we share with the PTC community the excellent review article “Advances in Combined Asymmetric Catalysis of Transition Metal/Phase-Transfer Catalysts” by Yi-Fan Dong, Si-Ru Wang, Zhi-Yong Han, Xiang Wu, Eur. J. Org. Chem. 2025, 28, e202401088.

This review highlights recent advances in the cooperative use of chiral phase-transfer catalysts (PTCs) with transition metal catalysis, an area that has matured significantly over the past two decades. The authors outline how this dual catalytic strategy enables reactivity and stereoselectivity that are often unachievable with either catalyst class alone. Central to this approach is the ability of chiral PTCs, particularly quaternary ammonium and phosphonium salts, to control ion-pairing environments and mediate phase transfer, while transition metals catalyze bond-forming steps. This synergy has proven particularly effective in asymmetric allylic alkylations and related transformations.

The article organizes its discussion around catalyst pairings, with detailed examples involving Pd, Ir, and Ag complexes combined with both cationic and anionic PTCs. Early breakthroughs using cinchona-derived ammonium salts with Pd catalysis established a precedent for enantioselective ion-pair-driven allylations. Further innovations included chiral phosphate-based anionic PTC’s that enabled stereocontrolled arylations and Heck-type reactions, as well as hybrid systems where ion-pairing is integrated directly into ligand design. These diverse systems demonstrate the growing sophistication and versatility of metal/PTC catalysis in complex asymmetric synthesis.

While the majority of current systems rely on precious metals, the authors note the potential for future development using more earth-abundant metals such as nickel and cobalt. Overall, this review serves as a comprehensive resource for understanding the mechanistic logic, structural design, and synthetic potential of combined PTC/transition metal catalysis and underscores the broad utility of this approach in pushing the boundaries of asymmetric methodology.

We highly recommend reading this excellent review article!


About Marc Halpern

Marc Halpern

Dr. Halpern is founder and president of PTC Organics, Inc., the only company dedicated exclusively to developing low-cost high-performance green chemistry processes for the manufacture of organic chemicals using Phase Transfer Catalysis. Dr. Halpern has innovated PTC breakthroughs for pharmaceuticals, agrochemicals, petrochemicals, monomers, polymers, flavors & fragrances, dyes & pigments and solvents. Dr. Halpern has provided PTC services on-site at more than 260 industrial process R&D departments in 37 countries and has helped chemical companies save > $200 million. Dr. Halpern co-authored five books including the best-selling “Phase-Transfer Catalysis: Fundamentals, Applications and Industrial Perspectives” and has presented the 2-day course “Practical Phase-Transfer Catalysis” at 50 locations in the US, Europe and Asia.

Dr. Halpern founded the journal “Industrial Phase-Transfer Catalysis” and “The PTC Tip of the Month” enjoyed by 2,100 qualified subscribers, now beyond 130 issues. In 2014, Dr. Halpern is celebrating his 30th year in the chemical industry, including serving as a process chemist at Dow Chemical, a supervisor of process chemistry at ICI, Director of R&D at Sybron Chemicals and founder and president of PTC Organics Inc. (15 years) and PTC Communications Inc. (20 years). Dr. Halpern also co-founded PTC Interface Inc. in 1989 and PTC Value Recovery Inc. in 1999. His academic breakthroughs include the PTC pKa Guidelines, the q-value for quat accessibility and he has achieved industrial PTC breakthroughs for a dozen strong base reactions as well as esterifications, transesterifications, epoxidations and chloromethylations plus contributed to more than 100 other industrial PTC process development projects.

Dr. Halpern has dedicated his adult life to his family and to phase-transfer catalysis (in that order!).

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