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◆ ACS Applied Nano Materials2026-03-26· Luminescence

Positional Isomerism Controlled Supramolecular Nanoarchitecture and Circularly Polarized Luminescence in Naphthalene Amphiphiles

Xin Wen, Rui Wang, Ying Pan, Li Zhang, Minghua Liu

原始摘要(英文原文)· Original abstract
Precise control of supramolecular nanoarchitecture and its functionality remains a consistent challenge in chiral materials design. Here, we show that positional isomerism in naphthalene-based amphiphiles governs self-assembly pathways, yielding distinct morphologies with opposite supramolecular chirality. It is found that the L-2-substituted isomer forms left-handed helical nanotubes driven by heterogeneous hydrogen bonding, exhibiting positive circular dichroism (CD) and circularly polarized luminescence (CPL) signals. In contrast, the L-1-substituted isomer assembles into right-handed twisted ribbons stabilized by cooperative hydrogen bonding, displaying inverted CD and CPL responses. These structural differences can further dictate the alignment of doped achiral fluorescent dyes, resulting in morphology-dependent induced CPL with either consistent or inverted signs relative to the host. This work elucidates how subtle molecular modifications direct supramolecular architecture and chiroptical function, providing a strategy for constructing tunable luminescent nanomaterials.
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Positional Isomerism Controlled Supramolecular Nanoarchitecture and Circularly Polarized Luminescence in Naphthalene Amphiphiles — 科研速览 Science Skim