Direct Nanopatterning of Complex 3D Surfaces and Self-Aligned Superlattices via Molecular-Beam Holographic Lithography
Shuangshuang Zeng, Tian Tian, Jiwoo Oh, Chih-Jen Shih

TL;DR
This paper introduces Molecular-Beam Holographic Lithography (MBHL), a novel direct patterning technique for complex 3D surfaces that achieves high precision and overlay accuracy, expanding possibilities for advanced nano-fabrication.
Contribution
The paper presents MBHL, a new interference lithography method using molecular beams for direct, high-precision patterning of complex 3D surfaces with self-aligned superlattices.
Findings
Achieved binary to quinary superlattices with 50 nm feature size.
Overlay accuracy of approximately 2 nanometers.
Demonstrated compatibility with various evaporable materials.
Abstract
Conventional lithography methods involving pattern transfer through resist templating face challenges of material compatibility with various process solvents. Other approaches of direct material writing often compromise pattern complexity and overlay accuracy. Here we explore a concept based on the moir\'e interference of molecular beams to directly pattern complex three-dimensional (3D) surfaces made by any evaporable materials, such as metals, oxides and organic semiconductors. Our proposed approach, termed the Molecular-Beam Holographic Lithography (MBHL), relies on precise control over angular projections of material flux passing through nanoapertures superimposed on the substrate, emulating the interference of coherent laser beams in interference lithography. Incorporating with our computational lithography (CL) algorithm, we have demonstrated self-aligned overlay of multiple…
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Taxonomy
TopicsNanofabrication and Lithography Techniques · Molecular Junctions and Nanostructures · Supramolecular Chemistry and Complexes
