2012•Bulletin of the Chemical Society of JapanRequires access

Preferential Crystallization of Lanthanoid Tris(β-diketonates) with Bridged Bis(2-pyridylmethyl)amine Ligands toward Separation Application

Masafumi Yano, Hidehiro Takemoto, Masakazu Tatsumi, Hiroyuki Miyake, Hiroshi Tsukube

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Abstract

Abstract A combination of two bridged bis(2-pyridylmethyl)amine-type ligands offered efficient separation of lanthanoid tris(β-diketonates) complexes. The employed ligands bridged two lanthanoid tris(β-diketonates) to form crystalline ternary complexes. Since the complexes containing larger lanthanoid centers were preferentially precipitated, the bridging ligands selectively recognized the lanthanoid tris(β-diketonates) in the crystallization process, and offered an efficient separation method.

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Abstract A combination of two bridged bis(2-pyridylmethyl)amine-type ligands offered efficient separation of lanthanoid tris(β-diketonates) complexes. The employed ligands bridged two lanthanoid tris(β-diketonates) to form crystalline ternary complexes. Since the complexes containing larger lanthanoid centers were preferentially precipitated, the bridging ligands selectively recognized the lanthanoid tris(β-diketonates) in the crystallization process, and offered an efficient separation method.

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Available abstract

Abstract A combination of two bridged bis(2-pyridylmethyl)amine-type ligands offered efficient separation of lanthanoid tris(β-diketonates) complexes. The employed ligands bridged two lanthanoid tris(β-diketonates) to form crystalline ternary complexes. Since the complexes containing larger lanthanoid centers were preferentially precipitated, the bridging ligands selectively recognized the lanthanoid tris(β-diketonates) in the crystallization process, and offered an efficient separation method.

Key concepts: Lanthanide, Chemistry, Tris, Amine gas treating, Crystallization, Ternary operation, Polymer chemistry, Medicinal chemistry

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