DOI: 10.1002/asia.70934 ISSN: 1861-4728

Guest‐Dependent Fluorescence Response by a Highly Emissive s ‐Tetrazine Pd 2 L 4 Cage

Jarrod A. Donnarumma, James G. Tsoukalas, Thomas P. Nicholls, Nina Prerad, Zi Goh, Tak W. Kee, Martin R. Johnston, Witold M. Bloch

ABSTRACT

Fluorescent cage molecules are highly sought after as they offer new avenues in selective chemosensing. s ‐Tetrazines are renowned for their fluorescent character and redox properties, yet integrating fluorescent tetrazine functionality into coordination cages remains largely unexplored. Here, we report the self‐assembly of a Pd 2 L 4 coordination cage from 3,6‐bis(pyridin‐3‐yloxy)‐1,2,4,5‐tetrazine. NMR spectroscopy, ESI‐MS, x‐ray crystallography, and density functional theory (DFT) calculations reveal a rigid helical cage structure that encapsulates a tetrafluoroborate anion within its highly electron‐deficient cavity. Cyclic voltammetry experiments show that both the ligand and cage can be reversibly reduced to the radical anion, while fluorescence measurements indicate that the cage completely retains the emissive properties of the free tetrazine ligand (quantum yield = 0.33, fluorescence lifetime = 120 ns). Anion exchange studies reveal pronounced binding preference for NO 3 ( K = 2300 M ‒1 in MeCN) over other monoanions. As a result, emission quenching for the bound NO 3 is non‐linear, while a linear trend is observed for the non‐encapsulated PF 6 anion—distinct fluorescence responses that reflect host–guest chemistry.

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