Pyrazolyl Complexes and Catalytic Advances in Modern Coordination Chemistry π±π¬
Over recent years scientists,
have focused on the catalytic potential of these complexes, particularly in organic transformations, oxidation reactions, C–C coupling, and polymerization processes ⚙️π§ͺ. The presence of transition metals such as copper, nickel, palladium, and ruthenium enhances catalytic efficiency while enabling tunable reactivity. These systems also show promise in green chemistry, reducing waste and energy consumption πΏ♻️.
Looking ahead, pyrazole-based coordination ,
complexes continue to shape emerging technologies and sustainable chemistry solutions π. Their potential applications extend to pharmaceuticals, materials science, and industrial catalysis, offering new pathways for innovation. With ongoing advancements in computational design, mechanistic understanding, and real-world testing, these complexes are expected to play an even greater role in future catalytic systems .
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