521 citations · 745 across the 3 of their papers we have counts for
7 papers
Molecular Valves for Controlling Gas Phase Transport Made from Discrete Angstrom-Sized Pores in Graphene
Luda Wang, Lee W. Drahushuk, Lauren Cantley +5
An ability to precisely regulate the quantity and location of molecular flux is of value in applications such as nanoscale 3D printing, catalysis, and sensor design. Barrier materi…
Accessing the transport properties of pristine few-layer black phosphorus by van der Waals passivation in inert atmosphere
Rostislav A. Doganov, Eoin C. T. O'Farrell, Steven P. Koenig +9
Ultrathin black phosphorus, or phosphorene, is the second known elementary two-dimensional material that can be exfoliated from a bulk van der Waals crystal. Unlike graphene it is…
Electric field effect in ultrathin black phosphorus
Steven P. Koenig, Rostislav A. Doganov, Hennrik Schmidt +2
Black phosphorus exhibits a layered structure similar to graphene, allowing mechanical exfoliation of ultrathin single crystals. Here we demonstrate few-layer black phosphorus fiel…
Mechanics of Adhered, Pressurized Graphene Blisters
Narasimha G. Boddeti, Steven P. Koenig, Rong Long +3
We study the mechanics of pressurized graphene membranes using an experimental configuration that allows the determination of the elasticity of graphene and the adhesion energy bet…
Selective Molecular Sieving through Porous Graphene
Steven P. Koenig, Luda Wang, John Pellegrino +1
Membranes act as selective barriers and play an important role in processes such as cellular compartmentalization and industrial-scale chemical and gas purification. The ideal memb…
Ultrathin Oxide Films by Atomic Layer Deposition on Graphene
Luda Wang, Jonathan J. Travis, Andrew S. Cavanagh +5
In this paper, a method is presented to create and characterize mechanically robust, free standing, ultrathin, oxide films with controlled, nanometer-scale thickness using Atomic L…