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Self-Assembly of Enantiopure Pd_(12) Tetrahedral Homochiral Nanocages with Tetrazole Linkers and Chiral Recognition

机译:具有四唑接头和手性识别的闭合PD_(12)四面体初型纳米病的自我组装

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摘要

Enantiopure acceptors (R,R)M and (S,S)M [where M = (N1,N1,N2,N2-tetramethylcyclohexane-1,2-diamine)Pd- (NO_3)_2] have been used to design enantiopure Pd(Ⅱ) tetrahedral cages. Self-assembly of [1,4-di(1H-tetrazol-5-yl)benzene] (H_2L~1) with chiral acceptors (R,R)M and (S,S)M yielded enantiopure homochiral tetrahedral cages (ΛΛΛΛ)T1 and (ΔΔΔΔ)T1, respectively. This strategy was further extended by using [2,6- di(1H-tetrazol-5-yl)naphthalene] (H_2L~2) with (R,R)M and (S,S)M to obtain water-soluble enantiopure tetrahedral nanocages (ΛΛΛΛ)T2 and (ΔΔΔΔ)T2, respectively. In order to obtain assembly with a larger cavity for potential use in enantioselective recognition, [4,4'-di(1H-tetrazol-5-yl)-1,1'-biphenyl] (H_2L~3) was used as the linker, which also resulted in the formation of water-soluble enantiopure tetrahedral cages (ΛΛΛΛ)T3 and (ΔΔΔΔ)T3 upon treatment with (R,R)M and (S,S)M, respectively. The present cages represent unusual examples of enantiopure tetrahedral cages of square-planar metal ions. Finally, T3 cages have been employed in a host-guest study as they offer the largest hydrophobic cavity. Encapsulation of chiral guest molecules such as [(R/S)-1,1'-binaphthalene]-2,2'-diol] (B) and [(R/S)-2,2'-diethoxy-1,1'- binaphthalene] (EtB) has been performed in order to successfully establish the asymmetric nature and enantiopurity of the tetrahedral cavity. The host T3 showed certain selectivity toward one enantiomer over the other. (ΛΛΛΛ)T3 preferred R-EtB over S-EtB (75:25) because of better fitting within the chiral cavity (Λ/R pair), whereas (ΔΔΔΔ)T3 favored S-EtB instead of R-EtB (Δ/ S pair ratio = 73:27) with similar selectivity.
机译:对映射受体(R,R)M和(S,S)M [其中M =(N1,N1,N 2,N 2-四甲基环己烷-1,2-二胺)PD-(NO_3)_2]已用于设计对映射PD (Ⅱ)四面体笼。 [1,4-DI(1H-四唑-5-基)苯](H_2L〜1)的自组装,具有手性受体(R,R)M和(S,S,S)M产生对映射着型HOOCHIRAL四面体笼(λλλλ) T1和(ΔΔΔΔδδδδδδδδδδδ。通过使用[2,6-二(1H-四唑-5-基)萘](H_2L〜2)与(R,R)M和(S,S)M进行进一步延长该策略,得到水溶性对映射四面体纳米病(λλλλ)T2和(ΔΔΔδ)T2。为了获得具有较大腔的组件,以潜在地使用对映选择性识别,[4,4'-DI(1H-四唑-5-基)-1,1'-联苯](H_2L〜3)用作接头(其在用(R,R)M和(S,S)M分别处理时也导致形成水溶性对映对四面体笼(λλλλ)T3和(ΔΔΔδ)T3。目前的笼子代表了方形平面金属离子的对闭路笼的不寻常的实例。最后,在宿主学​​习中,T3笼子已经在主机学习中,因为它们提供最大的疏水性腔。封装手性客体分子,如[(r / s)-1,1'-二苯甲烯] -2,2'-二醇](b)和[(r / s)-2,2'-二乙氧基-1,1 ' - 仲萘](ETB)已经进行,以便成功地建立四面体腔的不对称性和对闭合性。宿主T3向另一个对映体显示出某些选择性。 (λλλλ)T3优选的R-ETB(75:25),因为在手性腔内(λ/ R对)更好,而(ΔΔΔδ)T3喜欢S-ETB而不是R-ETB(Δ/ s对比率= 73:27)具有相似的选择性。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第19期|9070-9078|共9页
  • 作者单位

    Department of Inorganic and Physical Chemistry Indian Institute of Science Bangalore 560012 India;

    Department of Chemical and Pharmaceutical Sciences University of Trieste Trieste 34127 Italy;

    Department of Inorganic and Physical Chemistry Indian Institute of Science Bangalore 560012 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:43

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