A “ladder” Morphology in an ABC Triblock Copolymer
Takeshi Kaneko, Kazuya Suda, Kotaro Satoh, Masami Kamigaito, Toshinori Kato, Tomohiro Ono, E. Nakamura, Toshio Nishi, Hiroshi Jinnai
Abstract
Takeshi Kaneko, Kazuya Suda, Kotaro Satoh, Masami Kamigaito, Toshinori Kato, Tomohiro Ono, E. Nakamura, Toshio Nishi, Hiroshi Jinnai
Abstract
Abstract ABC triblock copolymers are known to exhibit a wide variety of unique types of morphologies compared to AB diblock copolymers. In the present study, poly(styrene‐block‐(ethylene‐alt‐propylene)‐block‐(methyl methacrylate)) (SEPM) triblock copolymers were synthesized and their morphologies were extensively studied by transmission electron microtomography (TEMT). In the SEPM triblock copolymer, two kinds of morphologies coexist: One was the well‐known knitting morphology, and the other was a novel morphology called the “ladder morphology”. The ladder morphology was a major morphology in the SEPM copolymer, the stability of which was discussed in terms of the interfacial area and the solubility parameters between the three components.
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Abstract ABC triblock copolymers are known to exhibit a wide variety of unique types of morphologies compared to AB diblock copolymers. In the present study, poly(styrene‐block‐(ethylene‐alt‐propylene)‐block‐(methyl methacrylate)) (SEPM) triblock copolymers were synthesized and their morphologies were extensively studied by transmission electron microtomography (TEMT). In the SEPM triblock copolymer, two kinds of morphologies coexist: One was the well‐known knitting morphology, and the other was a novel morphology called the “ladder morphology”. The ladder morphology was a major morphology in the SEPM copolymer, the stability of which was discussed in terms of the interfacial area and the solubility parameters between the three components.
Key concepts: Copolymer, Morphology (biology), Materials science, Polymer chemistry, Styrene, Transmission electron microscopy, Chemical engineering, Composite material