Defect-Induced Secondary Crystals Drive Two-Dimensional to Three-Dimensional Morphological Evolution in the Co-Self-Assembly of Polyferrocenylsilane Block Copolymer and Homopolymer

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Last updated 19 setembro 2024
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Block copolymer self-assembly: Polydisperse corona-forming blocks leading to uniform morphologies - ScienceDirect
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Predictive Self-Assembly of Polyhedra into Complex Structures
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Self-assembly of coherently dynamic, auxetic, two-dimensional protein crystals
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Journal of the American Chemical Society期刊最新论文, 化学/材料, - X-MOL
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Polymers, Free Full-Text
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Scheme 1 Synthesis of PLLA-b-PDMA diblock and PDMA-b-PLLA-b-PDMA
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Crystallization assisted self-assembly of semicrystalline block copolymers - ScienceDirect
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Block copolymer self-assembly: Polydisperse corona-forming blocks leading to uniform morphologies - ScienceDirect
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Publications Archive - The Huck Group
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Polymers, Free Full-Text
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Defect-Induced Secondary Crystals Drive Two-Dimensional to Three-Dimensional Morphological Evolution in the Co-Self-Assembly of Polyferrocenylsilane Block Copolymer and Homopolymer
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Polymers, Free Full-Text
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Defect-Induced Secondary Crystals Drive Two-Dimensional to Three-Dimensional Morphological Evolution in the Co-Self-Assembly of Polyferrocenylsilane Block Copolymer and Homopolymer
Defect-Induced Secondary Crystals Drive Two-Dimensional to  Three-Dimensional Morphological Evolution in the Co-Self-Assembly of  Polyferrocenylsilane Block Copolymer and Homopolymer
Crystallization-Driven Self-Assembly of Metallo-Polyelectrolyte Block Copolymers with a Polycaprolactone Core-Forming Segment

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