化学
发光
纳米晶
分子间力
荧光
纳米技术
结晶
水溶液
合理设计
晶体结构
光电子学
分子
材料科学
有机化学
光学
物理
作者
Fulong Ma,Rongyuan Zhang,Bingzhe Wang,Zongwen Liang,Siwei Zhang,Jinhui Jiang,Haozhe Tan,Guichuan Xing,Ryan T. K. Kwok,Jacky W. Y. Lam,Zheng Zhao,Ben Zhong Tang
摘要
Among the diverse challenges encountered by fluorescence imaging in the second near-infrared region (NIR-II, 1000-1700 nm), achieving high quantum yields (QYs) for contrast agents is critical yet rarely addressed. Herein, we demonstrate an approach to overcoming this issue through rational structural design that leverages hierarchical confinements at both molecular and aggregate levels. Through an alteration of methyl substituents, the rotational freedom of aromatic rings is effectively reduced, facilitating the formation of rigid mortise-and-tenon joints within the crystal lattice. As a result, an absolute QY of 9.7% is achieved in the crystal state. Moreover, the abundant intermolecular noncovalent interactions endow B-ToMeT with crystallization ability, enabling the assembly of nanocrystals (NCs) formed in aqueous solution, whose emission peak is 970 nm with an exceptionally high relative QY of 28.2%. This underscores the remarkable advantage of the hierarchical confinement strategy. By using the ultrabright NCs for real-time monitoring of intestinal vessels in the living system, early diagnosis and surgical treatment of acute intestinal ischemia can be realized, indicating the great potential of this molecular design for high-performance NIR-II materials in in vivo imaging and surgery navigation.
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