Chris Durcan
State University of New York System
25 Papers
115 Citations
Chris Durcan is an academic researcher from State University of New York System. The author has contributed to research in topics: Schottky barrier & Ballistic electron emission microscopy. The author has an hindex of 12, co-authored 25 publications. Previous affiliations of Chris Durcan include State University of New York Polytechnic Institute.
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Papers
Extraordinary photoresponse in two-dimensional In(2)Se(3) nanosheets.
Robin B. Jacobs-Gedrim,Mariyappan Shanmugam,Nikhil Jain,Chris Durcan,Michael C. Murphy,Thomas Murray,Richard J. Matyi,Richard L. Moore,Bin Yu +8 more
TL;DR: The high photocurrent response is attributed to the direct band gap of In2Se3 combined with a large surface-area-to-volume ratio and a self-terminated/native-oxide-free surface, which help to reduce carrier recombination while keeping fast response, allowing for real-time detection under very low-light conditions.
394
Layered semiconductor molybdenum disulfide nanomembrane based Schottky-barrier solar cells
TL;DR: Schottky-barrier solar cells employing a stack of layer-structured semiconductor molybdenum disulfide (MoS(2)) nanomembranes, synthesized by the chemical-vapor-deposition method, as the critical photoactive layer are demonstrated.
246
Molybdenum disulphide/titanium dioxide nanocomposite-poly 3-hexylthiophene bulk heterojunction solar cell
TL;DR: In this paper, a hybrid bulk heterojunction (BHJ) solar photovoltaic cell employing molybdenum disulfide (MoS2)/titanium dioxide (TiO2) nanocomposite (∼15μm thick) and poly 3-hexylthiophene (P3HT) active layers is presented.
161
Graphene interconnects fully encapsulated in layered insulator hexagonal boron nitride.
TL;DR: Improvements in the electrical performance of graphene interconnects with full encapsulation by lattice-matching layered insulator, hexagonal boron nitride (h-BN) are demonstrated without degrading the carrier transport characteristics in graphene wires.
37
Layered semiconductor tungsten disulfide: photoactive material in bulk heterojunction solar cells
TL;DR: In this paper, a 2D-layered semiconductor tungsten disulfide (WS 2 ) nanoflakes is used as an efficient photoactive material in bulk heterojunction (BHJ) solar cells.
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