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- W2600642771 endingPage "104" @default.
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- W2600642771 abstract "Herein we have investigated the domain width distributions of block copolymers and their ternary blends after directed assembly on chemically patterned surfaces with and without density multiplication. On chemical patterns with density multiplication, the width of the interpolated block copolymer domains was bimodal. Once blended with the corresponding homopolymers, the block copolymers exhibited unimodal distributions of domain width due to the redistribution of homopolymers in the block copolymer domains. When the block copolymers were blended with hydroxyl-terminated homopolymers, the homopolymers with functional end-groups healed the chemical patterns and facilitated the formation of nanostructures with further improved domain width distributions. Lastly, it is demonstrated that the block copolymers achieved the most improved domain width distributions when directed to assemble without density multiplication on one-to-one chemical patterns generated by molecular transfer printing." @default.
- W2600642771 created "2017-04-07" @default.
- W2600642771 creator A5018918501 @default.
- W2600642771 creator A5063197357 @default.
- W2600642771 date "2017-05-01" @default.
- W2600642771 modified "2023-09-28" @default.
- W2600642771 title "Improved block copolymer domain dispersity on chemical patterns via homopolymer-blending and molecular transfer printing" @default.
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- W2600642771 doi "https://doi.org/10.1016/j.polymer.2017.03.049" @default.
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