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Article Abstract

We describe the preparation, conformational dynamics, and stereoselective recognition characteristics of water-soluble pillar[6]arenes pS-2 and pR-2. These two novel and diastereomeric cavitands comprise a 2,5-bis(ethoxy)pillar[6]arene core with one of six phenylene ring conjugated to two hexaanionic dendrons. Each dendron includes an (S)-glutamic acid amidated with two tris-carboxylic Behera's amines. Cavitands pS-2 and pR-2 were obtained in six synthetic steps and resolved by column chromatography. The results of H NMR and circular dichroism spectroscopic measurements are in line with pS/pR-2 having unidirectional orientation of alkoxy substituents (i.e., planar chirality) and no observable interconversion for, at least, 2 weeks. Computational studies supported with H DOSY NMR measurements revealed that sufficiently bulky dendrons require high activation energy to pass through the pillararene's cylindrical cavity therefore inhibiting rotation of the phenylene holding them. With the unique and chiral binding pocket, pS-2 (pR-2) formed inclusion complexes with cocaine adulterants levamisole and dexamisole (K > mM), with their racemic mixture showing separate H NMR spectroscopic resonances. In this way, dendritic pillar[6]arenes can be used as chiral shift reagents for determining enantiopurity of pharmaceuticals but also for examining a variety of chiral recognition processes, sensing of chiral molecules, and stereoselective sequestrations in aqueous media.

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http://dx.doi.org/10.1002/anie.202514676DOI Listing

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We describe the preparation, conformational dynamics, and stereoselective recognition characteristics of water-soluble pillar[6]arenes pS-2 and pR-2. These two novel and diastereomeric cavitands comprise a 2,5-bis(ethoxy)pillar[6]arene core with one of six phenylene ring conjugated to two hexaanionic dendrons. Each dendron includes an (S)-glutamic acid amidated with two tris-carboxylic Behera's amines.

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Institut für Anorganische und Analytische Chemie, Technische Universität Braunschweig, Hagenring 30, D-38106 Braunschweig, Germany.

Compound , (disulfane-1,2-di-yl)bis-(-butyl-diiso-propyl-phospho-nium) bis-[tetra-chlorido-aurate(III)], ( Bu PrP)S·[AuCl], contains the first structurally characterized dication of the form {( P) } . The ions are linked by S⋯Cl contacts and C-H⋯Cl hydrogen bonds to form ribbons of residues parallel to the axis. Compound is bis-(di--butyl-iso-propyl-phosphine sulfide-κ)gold(I) triiodide/di-iodido-aurate(I)(0.

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During our studies of the oxidation of gold(I) complexes of tri-alkyl-phosphane chalcogenides, general formula PAu, ( = -butyl or isopropyl, = S or Se, = Cl or Br) with PhICl or elemental bromine, we have isolated a set of seven mixed-valence by-products, the bis-(tri-alkyl-phosphane chalcogenido)gold(I) tetra-halogenidoaurates(III) [( P)Au][Au ]. These corres-pond to the addition of one halogen atom per gold atom of the Au precursor. Com-pound , bis-(triiso-propyl-phosphane sulfide)-gold(I) tetra-chlorido-aur-ate(III), [Au(CHPS)][AuCl] or [( PrPS)Au][AuCl], crystallizes in space group 2/ with = 4; the gold(I) atoms of the two cations lie on twofold rotation axes, and the gold(III) atoms of the two anions lie on inversion centres.

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July 2014

Department of Chemistry, Rutgers University-Newark, 73 Warren Street, Newark, NJ 07102 (USA), Fax: (+1) 973-353-1264.

In an effort to develop a new class of redox-active chiral Lewis pairs, pyridine and borane moieties with different steric and electronic properties were introduced onto a planar chiral 1,2-disubstituted ferrocene framework. Metathesis of lithiated, stannylated, or mercuriated pyridylferrocenes with boron halides afforded (pR)-2-[bis(pentafluorophenyl)boryl]-1-(3,5-dimethylpyrid-2-yl)ferrocene (4-Pf), (pR)-2-[dimesitylboryl]-1-(3,5-dimethylpyrid-2-yl)ferrocene (4-Mes), (pS)-2-(bis(pentafluorophenyl)boryl)-1-(2-trimethylsilylpyrid-6-yl)ferrocene (5-Pf), or (pS)-2-[dimesitylboryl]-1-(2-trimethylsilylpyrid-6-yl)ferrocene (5-Mes). The borylated products were analyzed by multinuclear NMR spectroscopy, HRMS, and single-crystal X-ray diffraction.

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