Postpolymerization modification based on dynamic imine chemistry for the synthesis of functional polyacetylenes
Literature Information
Baojian Ni, Heng Liu, Toshio Masuda
We report here a postpolymerization modification approach based on dynamic imine chemistry for the facile synthesis of a variety of functional polyacetylenes from a polymeric substrate. A high molecular weight polyacetylene bearing imine moiety (P1) was synthesized and used as the parent polymer. Postpolymerization modification of P1 with a series of amines, (S)- and (R)-1-phenylethanamine, (S)-2-amino-2-phenylethanol, (S)-1-(naphthalen-2-yl)ethanamine, and 4-amino-2,2,6,6-tetramethylpiperidine-1-oxyl through transimination afforded the target products (P1a–P1e). Transimination reactions proceeded smoothly under mild conditions without any catalysts, and complete substitution was confirmed under suitable conditions by 1H NMR spectroscopy. Incorporation of chiral pendant groups induced predominantly one-handed helicity along the polyene backbone (P1a–P1d). P1e formed from 4-amino-2,2,6,6-tetramethylpiperidine-1-oxyl exhibited reversible charge/discharge ability, indicative of its capacity as an electrode-active material for organic batteries. Given the commercial availability of diverse amines and mild reaction conditions, the transimination reaction is considered as a versatile polymer modification tool for the preparation of functional materials.
Recommended Journals
Related Literature
Characterization of strain recovery and “self-healing” in a self-assembled metallo-gel
Pierre Terech, Minhao Yan, Manuel Maréchal, Guy Royal, Jose Galvez, Sabareesh K. P. Velu
DOI: 10.1039/C3CP50671A
Hydrogen and carbon monoxide generation from laser-induced graphitized nanodiamonds in water
Dong Myung Jang, Hyung Soon Im, Yoon Myung, Yong Jae Cho, Han Sung Kim, Seung Hyuk Back, Jeunghee Park, Eun Hee Cha, Minyung Lee
DOI: 10.1039/C3CP50769F
Photoelectrical properties and the electronic structure of Tl1−xIn1−xSnxSe2 (x = 0, 0.1, 0.2, 0.25) single crystalline alloys
G. E. Davydyuk, H. Kamarudin, G. L. Myronchuk, S. P. Danylchuk, A. O. Fedorchuk, L. V. Piskach, M. Yu. Mozolyuk, O. V. Parasyuk
DOI: 10.1039/C3CP50836F
Combined experimental and theoretical investigation of the hemi-squaraine/TiO2 interface for dye sensitized solar cells
Giancarlo Cicero, Bruno Camino, Stefano Bianco, Anna Maria Ferrari, Barbara Ballarin, Claudia Barolo
DOI: 10.1039/C3CP50559F
Interpretation of experimental hydrogen-bond enthalpies and entropies from COSMO polarisation charge densities
Jens Reinisch, Frank Eckert, Jérôme Graton, Jean-Yves Le Questel
DOI: 10.1039/C3CP44611E
Rovibrational states of ClHCl− isotopologues up to high J: a joint theoretical and spectroscopic investigation
Peter Sebald, Rainer Oswald, Peter Botschwina, Kentarou Kawaguchi
DOI: 10.1039/C3CP44236E
Spectroscopic and theoretical investigations of adenosine 5′-diphosphate and adenosine 5′-triphosphate dianions in the gas phase
Paul E. Crider, Matthias Vonderach, Patrick Weis
DOI: 10.1039/C2CP43808A
Non-bonding interactions and internal dynamics in CH2F2⋯H2CO: a rotational and model calculations study
Qian Gou, Gang Feng, Luca Evangelisti, Alberto Lesarri, Emilio J. Cocinero, Walther Caminati
DOI: 10.1039/C3CP50306B
Changed reactivity of the 1-bromo-4-nitrobenzene radical anion in a room temperature ionic liquid
Sven Ernst, Kristopher R. Ward, Sarah E. Norman, Christopher Hardacre, Richard G. Compton
DOI: 10.1039/C3CP51004B
You might also like
What precautions should be taken when handling 4-(2-Furylmethyl)thiomorpholine 1,1-dioxide (CAS: 79206-94-3)?
When handling 4-(2-Furylmethyl)thiomorpholine 1,1-dioxide (CAS: 79206-94-3), it ...
What precautions should be taken when handling 4-Chloro-N-[2-(4-morpholinyl)ethyl]benzamide (CAS: 71320-77-9)?
When handling 4-Chloro-N-[2-(4-morpholinyl)ethyl]benzamide (CAS: 71320-77-9), it...
How should waste containing 2-[2-(2-Methoxyethoxy)ethoxy]ethyl 4-methylbenzenesulfonate (CAS: 62921-74-8) be handled?
Waste containing this compound (CAS: 62921-74-8) should be handled according to ...
How should waste containing (S)-Methyl 2-amino-3-cyclohexylpropanoate be handled?
Waste containing (S)-Methyl 2-amino-3-cyclohexylpropanoate should be collected i...
How is 5-({4-[(2S,4R)-4-Hydroxy-2-methyltetrahydro-2H-pyran-4-yl]-2-thienyl}sulfanyl)-1-methyl-1,3-dihydro-2H-indol-2-one (CAS: 166882-70-8) typically synthesized?
This compound can be synthesized using a multi-step process involving the conjug...
Are there alternatives to (2E)-3-(3,4-Dichlorophenyl)acrylic acid (CAS: 7312-27-8) in synthesis?
There are several alternatives to (2E)-3-(3,4-Dichlorophenyl)acrylic acid in syn...
How should Ethyl 6-(2-nitrophenyl)imidazo[2,1-b][1,3]thiazole-3-carboxylate (CAS: 925437-84-9) be stored?
Ethyl 6-(2-nitrophenyl)imidazo[2,1-b][1,3]thiazole-3-carboxylate (CAS: 925437-84...
How should waste containing 2-(1,3-Thiazol-2-yl)ethanamine (CAS: 18453-07-1) be handled?
Waste containing 2-(1,3-Thiazol-2-yl)ethanamine (CAS: 18453-07-1) should be coll...
How is Methyl 5-iodo-2-methylbenzoate (CAS: 103440-54-6) typically synthesized?
Methyl 5-iodo-2-methylbenzoate can be synthesized through the iodination of meth...
How is 5-Chloro[1,2,4]triazolo[1,5-a]pyridine (CAS: 1427399-34-5) typically synthesized?
5-Chloro[1,2,4]triazolo[1,5-a]pyridine is commonly synthesized via the condensat...
Source Journal
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.










![4-{2-[4-(2-Methyl-2-propanyl)phenyl]ethoxy}quinazoline structure 4-{2-[4-(2-Methyl-2-propanyl)phenyl]ethoxy}quinazoline structure](https://static.chemtradehub.com/structs/120/120928-09-8-d3db.webp)



