Perchloric acid,iron(2+) salt (2:1)

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CAS: 13933-23-8
MF: 2[O4Cl-].Fe+2
MW: 254.7462
Synonyms: Perchloric acid,iron(2+) salt (2:1)

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Peng Cheng

Nankai University
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Wei Shi

Nankai University
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Gaolin Liang

University of Science and Technology of China
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Dongfeng Li

Central China Normal University (CCNU)
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Cheng He

Dalian University of Technology
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Tao Liu

Dalian University of Technology
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Jeremiah A. Johnson

Massachusetts Institute of Technology
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Co-reporter: Ken Kawamoto, Scott C. Grindy, Jenny Liu, Niels Holten-Andersen, and Jeremiah A. Johnson
pp: 458
Publication Date(Web):April 9, 2015
DOI: 10.1021/acsmacrolett.5b00221
The inverse-electron demand Diels–Alder cycloaddition of tetrazines and olefins has emerged as a powerful coupling reaction for the formation of polymer gels with diverse applications. Tetrazines are also excellent ligands for metal atoms. For example, 3,6-bis(2-pyridyl)-1,2,4,5-tetrazines (bptz) have been used to generate discrete supramolecular Mxbptzy metal clusters and extended 2D grid structures. We reasoned that both the Diels–Alder and the metal-coordination modes of reactivity of bptz derivatives could be leveraged in the context of hydrogel design to yield novel hybrid materials. Here we report on the formation of supramolecular hydrogels via substoichiometric Diels–Alder functionalization of bptz ligands bound to the ends of poly(ethylene glycol) (PEG) chains followed by metal-coordination-induced gelation in the presence of Ni2+ and Fe2+ salts. Our results show that simple bptz-based polymers are versatile precursors to a diverse range of novel functional materials.

Daniel L. Reger

University of South Carolina
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Kim R. Dunbar

Texas A&M University
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David O. Wipf

Mississippi State University
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