TY - JOUR
T1 - Peripheral Control of the Assembly and Chirality of Anion-Based Octanuclear Cubes by Cation-π Networks
AU - Liang, Lin
AU - Su, Pingru
AU - Wang, Yue
AU - Li, Boyang
AU - Lu, Shuai
AU - Ma, Hongwei
AU - Chen, Yiyang
AU - Zhao, Wei
AU - Li, Xiaopeng
AU - Yang, Xiao Juan
AU - Wu, Biao
N1 - Publisher Copyright:
© 2024 American Chemical Society.
PY - 2024/4/17
Y1 - 2024/4/17
N2 - Self-assembly of sophisticated polyhedral cages has drawn much attention because of their elaborate structures and potential applications. Herein, we report the anion-coordination-driven assembly of the first A8L12 (A = anion, L = ligand) octanuclear cubic structures from phosphate anion and p-xylylene-spaced bis-bis(urea) ligands via peripheral templating of countercations (TEA+ or TPA+). By attaching terminal aryl rings (phenyl or naphthyl) to the ligand through a flexible (methylene) linker, these aryls actively participate in the formation of plenty of “aromatic pockets” for guest cation binding. As a result, multiple peripheral guests (up to 22) of suitable size are bound on the faces and vertices of the cube, forming a network of cation-π interactions to stabilize the cube structure. More interestingly, when chiral ligands were used, either diastereomers of mixed Λ- and Δ-configurations (with TEA+ countercation) for the phosphate coordination centers or enantiopure cubes (with TPA+) were formed. Thus, the assembly and chirality of the cube can be modulated by remote terminal groups and peripheral templating tetraalkylammonium cations.
AB - Self-assembly of sophisticated polyhedral cages has drawn much attention because of their elaborate structures and potential applications. Herein, we report the anion-coordination-driven assembly of the first A8L12 (A = anion, L = ligand) octanuclear cubic structures from phosphate anion and p-xylylene-spaced bis-bis(urea) ligands via peripheral templating of countercations (TEA+ or TPA+). By attaching terminal aryl rings (phenyl or naphthyl) to the ligand through a flexible (methylene) linker, these aryls actively participate in the formation of plenty of “aromatic pockets” for guest cation binding. As a result, multiple peripheral guests (up to 22) of suitable size are bound on the faces and vertices of the cube, forming a network of cation-π interactions to stabilize the cube structure. More interestingly, when chiral ligands were used, either diastereomers of mixed Λ- and Δ-configurations (with TEA+ countercation) for the phosphate coordination centers or enantiopure cubes (with TPA+) were formed. Thus, the assembly and chirality of the cube can be modulated by remote terminal groups and peripheral templating tetraalkylammonium cations.
UR - http://www.scopus.com/inward/record.url?scp=85189869917&partnerID=8YFLogxK
U2 - 10.1021/jacs.4c01747
DO - 10.1021/jacs.4c01747
M3 - Article
C2 - 38579155
AN - SCOPUS:85189869917
SN - 0002-7863
VL - 146
SP - 10908
EP - 10916
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 15
ER -