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Influence of Rhenium Concentration on Charge Doping and Defect Formation in MoS2
Kyle T. Munson, Riccardo Torsi, Fatimah Habis +8
Substitutionally doped transition metal dichalcogenides (TMDs) are the next step towards realizing TMD-based field effect transistors, sensors, and quantum photonic devices. Here,…
Tailoring Amorphous Boron Nitride for High-Performance 2D Electronics
Cindy Y. Chen, Zheng Sun, Riccardo Torsi +8
Two-dimensional (2D) materials have garnered significant attention in recent years due to their atomically thin structure and unique electronic and optoelectronic properties. To ha…
Dynamic STEM-EELS for single atom and defect measurement during electron beam transformations
Kevin M. Roccapriore, Riccardo Torsi, Joshua Robinson +2
On- and off-axis electron energy loss spectroscopy (EELS) is a powerful method for probing local electronic structure on single atom level. However, many materials undergo electron…
Charge State-Dependent Symmetry Breaking of Atomic Defects in Transition Metal Dichalcogenides
Feifei Xiang, Lysander Huberich, Preston A. Vargas +11
The functionality of atomic quantum emitters is intrinsically linked to their host lattice coordination. Structural distortions that spontaneously break the lattice symmetry strong…
Dilute Rhenium Doping and its Impact on Intrinsic Defects in MoS2
Riccardo Torsi, Kyle T. Munson, Rahul Pendurthi +11
Substitutionally-doped 2D transition metal dichalcogenides are primed for next-generation device applications such as field effect transistors (FET), sensors, and optoelectronic ci…