School of Chemistry and Molecular Engineering , East China Normal University , Shanghai 200062 , China.
School of Chemistry , University of Manchester , Manchester M13 9PL , United Kingdom.
J Am Chem Soc. 2019 Mar 6;141(9):3952-3958. doi: 10.1021/jacs.8b12548. Epub 2019 Feb 20.
The binding of Zn(II) cations to a pentafoil (5) knotted ligand allows the synthesis of otherwise inaccessible metalated molecular pentafoil knots via transmetalation, affording the corresponding "first-sphere" coordination Co(II), Ni(II), and Cu(II) pentanuclear knots in good yields (≥85%). Each of the knot complexes was characterized by mass spectrometry, the diamagnetic (zinc) knot complex was characterized by H and C NMR spectroscopy, and the zinc, cobalt, and nickel pentafoil knots afforded single crystals whose structures were determined by X-ray crystallography. Lehn-type circular helicates generally only form with tris-bipy ligand strands and Fe(II) (and, in some cases, Ni(II) and Zn(II)) salts, so such architectures become accessible for other metal cations only through the use of knotted ligands. The different metalated knots all exhibit "second-sphere" coordination of a single chloride ion within the central cavity of the knot through CH···Cl hydrogen bonding and electrostatic interactions. The chloride binding affinities were determined in MeCN by isothermal titration calorimetry, and the strength of binding was shown to vary over 3 orders of magnitude for the different metal-ion-knotted-ligand second-sphere coordination complexes.
锌(II)阳离子与五叶形(5)纽结配体的结合允许通过转金属化合成原本无法获得的金属化分子五叶形纽结,从而以良好的收率(≥85%)获得相应的“第一球”配位 Co(II)、Ni(II)和 Cu(II)五核纽结。每个纽结配合物都通过质谱法进行了表征,具有抗磁性(锌)纽结配合物通过 H 和 C NMR 光谱法进行了表征,并且锌、钴和镍五叶形纽结提供了单晶,其结构通过 X 射线晶体学确定。通常只有三吡啶配体链和 Fe(II)(在某些情况下,Ni(II)和 Zn(II))盐才能形成 Lehn 型圆形螺旋体,因此只有通过使用纽结配体才能使其他金属阳离子获得这种结构。不同的金属化纽结都通过 knot 中的 CH···Cl 氢键和静电相互作用在纽结的中央腔体内表现出单个氯离子的“第二球”配位。通过等温滴定量热法在 MeCN 中测定了氯化物的结合亲和力,并且表明不同金属离子-纽结配体第二球配位配合物的结合强度变化了 3 个数量级。