Papers
2
Total Citations
118
H-Index
2
About
Shuo Qu is pioneering the intersection of additive manufacturing and advanced metamaterials, with a focus on creating next-generation multifunctional structures. Their research centers on lattice metamaterials—architected materials that achieve extraordinary physical properties through precise geometric design rather than chemistry alone. Qu’s most cited work (2025, 101 citations) establishes comprehensive design principles for multi-physical lattice metamaterials, revealing how additive manufacturing enables the integration of mechanical, thermal, and acoustic functionalities within a single lightweight architecture. This framework has become essential reading for researchers seeking to exploit metamaterials in aerospace, biomedical, and energy-absorbing applications. In parallel, Qu’s investigation into superelastic NiTi components via high-precision laser powder bed fusion (2023, 17 citations) demonstrates mastery of process-structure-property relationships, identifying energy density and minimal feature size as critical levers for tailoring shape-memory alloy performance. This work advances the reliable fabrication of intricate, functional NiTi devices for stents, actuators, and deployable structures. Collectively, Qu’s contributions bridge fundamental materials science with practical manufacturing constraints, offering a roadmap for realizing the full potential of architected materials in real-world engineering.
Research Focus
Key Achievements
Top Papers
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