Issue 10, 2014

Co-crystallization phase transformations in all π-conjugated block copolymers with different main-chain moieties

Abstract

Driven by molecular affinity and balance in the crystallization kinetics, the ability to co-crystallize dissimilar yet self-crystallizable blocks of a block copolymer (BCP) into a uniform domain may strongly affect its phase diagram. In this study, we synthesize a new series of crystalline and monodisperse all-π-conjugated poly(2,5-dihexyloxy-p-phenylene)-b-poly(3-(2-ethylhexyl)thiophene) (PPP–P3EHT) BCPs and investigate this multi-crystallization effect. Despite vastly different side-chain and main-chain structures, PPP and P3EHT blocks are able to co-crystallize into a single uniform domain comprising PPP and P3EHT main-chains with mutually interdigitated side-chains spaced in-between. With increasing P3EHT fraction, PPP–P3EHTs undergo sequential phase transitions and form hierarchical superstructures including predominately PPP nanofibrils, co-crystalline nanofibrils, a bilayer co-crystalline/pure P3EHT lamellar structure, a microphase-separated bilayer PPP–P3EHT lamellar structure, and finally P3EHT nanofibrils. In particular, the presence of the new co-crystalline lamellar structure is the manifestation of the interaction balance between self-crystallization and co-crystallization of the dissimilar polymers on the resulting nanostructure of the BCP. The current study demonstrates the co-crystallization nature of all-conjugated BCPs with different main-chain moieties and may provide new guidelines for the organization of π-conjugated BCPs for future optoelectronic applications.

Graphical abstract: Co-crystallization phase transformations in all π-conjugated block copolymers with different main-chain moieties

Supplementary files

Article information

Article type
Paper
Submitted
13 Nov 2013
Accepted
24 Jan 2014
First published
29 Jan 2014

Nanoscale, 2014,6, 5208-5216

Co-crystallization phase transformations in all π-conjugated block copolymers with different main-chain moieties

Y. Lee, W. Chen, Y. Yang, C. Chiang, T. Yokozawa and C. Dai, Nanoscale, 2014, 6, 5208 DOI: 10.1039/C3NR06037C

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