Self-Assembly of Rod−Coil−Rod Triblock Copolymer and Homopolymer Blends
Longcheng Gao, Jie Yao, Zhihao Shen, Yixian Wu, Xiaofang Chen, Xinghe Fan, Qifeng Zhou
Abstract
Longcheng Gao, Jie Yao, Zhihao Shen, Yixian Wu, Xiaofang Chen, Xinghe Fan, Qifeng Zhou
Abstract
The self-assembly structures and their transformation of blends of rod−coil−rod triblock copolymers and homopolymers were first detected. Adding coil homopolymers into block copolymers with a lamellar structure resulted in an increase of d -spacing. When coil homopolymers were added into triblock copolymer with a rod continuous hexagonally packed-cylinder structure, lamellar structures were obtained, and the lamellar d -spacing were smaller than that of the original structure. The addition of rod-like homopolymer into the block copolymers with a lamellar structure also resulted in the increase of the d -spacing. As a result of the interdigitation, the rod blocks must rearrange to a larger angle with respect to the interface.
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The self-assembly structures and their transformation of blends of rod−coil−rod triblock copolymers and homopolymers were first detected. Adding coil homopolymers into block copolymers with a lamellar structure resulted in an increase of d -spacing. When coil homopolymers were added into triblock copolymer with a rod continuous hexagonally packed-cylinder structure, lamellar structures were obtained, and the lamellar d -spacing were smaller than that of the original structure. The addition of rod-like homopolymer into the block copolymers with a lamellar structure also resulted in the increase of the d -spacing. As a result of the interdigitation, the rod blocks must rearrange to a larger angle with respect to the interface.
Key concepts: Copolymer, Lamellar structure, Materials science, Electromagnetic coil, Polymer chemistry, Cylinder, Self-assembly, Polymer