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◆ npj Flexible Electronics2026-06-06· Materials science

Deterministic roll-contact printing of ultradense aligned nanowire arrays for high-performance flexible electronics

Adamos Christou, Abhishek Singh Dahiya, Ayoub Zumeit, Ravinder Dahiya

原始摘要(英文原文)· Original abstract
Abstract Semiconducting nanowires (NWs) are versatile building blocks for mechanically compliant electronics, with applications spanning sensing, displays, and neuromorphic computing. However, translating their exceptional one-dimensional transport properties into large-area device arrays requires scalable assembly methods capable of simultaneously controlling NW density, alignment, and material purity - a combination that has remained elusive. Here we report a deterministic contact roll-printing approach that overcomes this barrier, enabling highly aligned ZnO NWs arrays at record densities of up to 14 NWs/µm on flexible substrates. Replacing conventional area contact with a travelling line contact reduces mechanical stress on individual NWs while enabling continuous, large-area transfer. Parametric studies reveal the governing mechanisms of high-fidelity NW assembly, including the roles of applied force and velocity ratio in controlling density, transfer length, alignment uniformity, and suppression of donor-derived contamination. Flexible ultraviolet photodetectors fabricated across a controlled range of NW densities show that performance scales systematically with printed density. Highest-density devices achieve responsivity of up to 4000 A W⁻¹ and retain full functionality after 5000 bending cycles at 10 mm radius and 5000 twisting cycles at ±25°. This work established both a fundamental understanding of roll-contact NW assembly mechanics and a manufacturable, resource-efficient route to high-performance large-area flexible electronics.
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