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◆ Science2026-01-29· Polyolefin

Lithographic crystallinity regulation in additive fabrication of thermoplastics (CRAFT)

Alex J. Commisso, Eric M. Nagel, Meghan T. Kiker, Elizabeth A. Recker, Adam Bischoff, Michael J. Holzmann, Hayden E. Fowler, Minh Nhat Pham, Chi Phuong H. Nguyen, E. M. Baca, Hernan Villanueva, Nirvana T. Almada, Keldy S. Mason, Claire Jolowsky, Guddi K. Suman, Keith Fritzsching, Bryan Kaehr, Johanna J. Schwartz, Leah N. Appelhans, Brad H. Jones, Caitlin S. Sample, Devin J. Roach, Zachariah A. Page, Samuel C. Leguizamon

原始摘要(英文原文)· Original abstract
For semicrystalline polyolefin thermoplastics, the balance between interconnected ordered crystalline and disordered amorphous regions is paramount to their performance and processability. However, contemporary manufacturing strategies, from injection molding to three-dimensional (3D) printing, result in monolithic objects, unable to spatially encode crystallinity. We develop a light-based approach for fabricating mechanically robust polyolefin thermoplastics with microscopic control over crystallinity in 3D space. Light dosage governs polymer stereochemistry giving access to a continuum of materials, from strong rigid plastics, such as high-density polyethylene, to more extensible materials akin to low-density polyethylene, all at the flick of a switch. Leveraging this finding in lithographic grayscale 3D printing enables rapid multimaterial fabrication with voxel-level control over optical and mechanical properties, opening avenues in information storage, soft robotics, and energy damping.
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Lithographic crystallinity regulation in additive fabrication of thermoplastics (CRAFT) — 科研速览 Science Skim