activity
20112015
most citedAccessing the transport properties of pristine few-layer black phosphorus by van der Waals passivation in inert atmosphere

521 citations · 745 across the 3 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall2015★ 150 cited

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…

cond-mat.mes-hall2014★ 521 cited

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…

cond-mat.mes-hall2014

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…

cond-mat.mes-hall2013

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…

cond-mat.mes-hall2012

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…

cond-mat.mes-hall2012★ 74 cited

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…