4.8 Review

Atomic Manufacturing of Advanced Nanomaterials

Journal

ADVANCED MATERIALS
Volume -, Issue -, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202306689

Keywords

atom by atom; atomic manipulation; atomic manufacturing; precision synthesis

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Atomic manufacturing is a guideline for precisely synthesizing materials, customizing their properties, and applying them to advanced applications in demand. It has the ability to visualize substances at the atomic level, manipulate atoms atom by atom, induce and promote chemical reactions, and ultimately obtain products with specific atomic structures.
The quest for cutting-edge materials and devices has necessitated elevated demands for manufacturing methodologies. Atomic manufacturing involves the meticulous design and fabrication of materials and devices at the atomic level, a process that has been facilitated by advancements in comprehending and manipulating atomic behavior. The attainment of atomic manufacturing is dependent on the capacity to precisely manipulate atoms, directing their reactions at will. In this review, five methodologies of atomic fabrication encompassing atomic manipulation, atomic programming, atomic epitaxy, atomic confinement, and atomic assembly are elucidated. Based on this, the utilization of atomic manufacturing in the most advanced domains including energy conversion, energy storage, quantum information technology, and optoelectronic devices is elucidated. Finally, the current challenges and outlook on the forthcoming advancement of atomic manufacturing are presented. Atomic manufacturing is a guideline for researchers to precisely synthesize materials, customize their properties, and apply them into advanced applications in demand. Atomic manufacturing has the ability to visualize substances at the atomic level, while manipulating them atom by atom, inducing and promoting chemical reactions, and ultimately obtaining products with specific atomic structures.image

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