#DefectEngineering
Our work on modeling extended defects in MoS2 is now out in Small!

onlinelibrary.wiley.com/doi/10.1002/...

We show how size and chemical environment affect nanopore geometry in MoS2, changing pore shapes from irregular to triangular.

#2Dmaterials #Nanopores #MaterialsModeling #DefectEngineering
Size and Chemical Environment Control Nanopore Geometry in 2D MoS2: From Irregular to Triangular Defects
This work addresses a longstanding challenge of developing a predictive framework for defect topologies in 2D MoS2. By combining density functional theory calculations, kinetic Monte Carlo simulation...
onlinelibrary.wiley.com
July 1, 2025 at 3:26 PM
Screw dislocations and uniform torsion in helically twisted nanowires create geometry-controlled electron confinement without external potentials, enabling tunable nonlinear optical gain and state-selective amplification in the mid-IR/THz range.

#QuantumNanophotonics #DefectEngineering #Research
Torsion-Induced Geometric Confinement and Tunable Nonlinear Optical Gain in Mesoscopic Quantum Wires
iq.fp2.dev
April 15, 2026 at 4:27 AM
Reproducible #DefectEngineering remains a nanomanufacturing challenge.

This study uses #AI to optimize defect design, improving #nanomaterial performance, reproducibility, and scalability across diverse applications.

#OpenAccess in #NanotechnologyReviews: doi.org/10.1515/ntre...
September 3, 2026 at 2:30 AM
Scientists have developed a single‑step CVD process using azupyrene to embed 5‑7 carbon ring defects into graphene, enabling tunable defect density and boosting gas‑sensor response. https://getnews.me/researchers-use-engineered-defects-to-boost-graphene-performance/ #graphene #defectengineering
September 20, 2025 at 12:52 PM