Guo Yuchen, Zhang Yifei, Ma Jianfei, Liao Rui, Wang Feng
Department of Vascular Surgery, The First Affiliated Hospital of University of Science and Technology of China (USTC), and Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, Anhui, PR China.
Nat Commun. 2024 Oct 28;15(1):9303. doi: 10.1038/s41467-024-53297-z.
Circularly polarized luminescence materials with broad color tunability are highly valuable for applications in 3D display and photonic technologies. Here we show that incorporating intermolecular charge-transfer complexation into chiral supramolecular polymers is an efficient strategy to achieve this objective. Adjusting the charge-transfer strength between triphenylamine donors and naphthalenemonoimide acceptors enables tunable circularly polarized luminescence signals across the visible light spectrum. This includes blue-colored emission for the supramolecular donor polymers, as well as green, yellow, orange and red-colored emission for supramolecular donor-acceptor polymers. The donor-acceptor packing modes are further influenced by the presence or absence of acetylene linkages on the triphenylamine donors, resulting in ground- or excited-state charge transfer with varying luminescent lifetimes. Additionally, white-light circularly polarized luminescence is achieved by encapsulating blue- and orange-emitting species into surfactant-based micelles in a compartmentalized manner. Overall, manipulating charge-transfer complexation in supramolecular polymers provides an effective approach to wide-range tunable circularly polarized luminescence materials.
具有广泛颜色可调性的圆偏振发光材料在3D显示和光子技术应用中具有很高的价值。在此我们表明,将分子间电荷转移络合作用引入手性超分子聚合物是实现这一目标的有效策略。调节三苯胺供体和萘单酰亚胺受体之间的电荷转移强度,能够在可见光谱范围内实现可调谐的圆偏振发光信号。这包括超分子供体聚合物的蓝色发射,以及超分子供体-受体聚合物的绿色、黄色、橙色和红色发射。三苯胺供体上乙炔键的存在与否进一步影响供体-受体堆积模式,导致具有不同发光寿命的基态或激发态电荷转移。此外,通过将蓝色和橙色发光物种以分隔的方式封装到基于表面活性剂的胶束中,实现了白光圆偏振发光。总体而言,操纵超分子聚合物中的电荷转移络合作用为宽范围可调谐圆偏振发光材料提供了一种有效方法。