activity
20132017
most citedNMR Probe of Metallic States in Nanoscale Topological Insulators

51 citations · 156 across the 6 of their papers we have counts for

collaborators

6 papers

physics.bio-ph2017

Targeted Nanodiamonds for Identification of Subcellular Protein Assemblies in Mammalian Cells

Michael P. Lake, Louis-S. Bouchard

Transmission electron microscopy (TEM) can be used to successfully determine the structures of proteins. However, such studies are typically done ex situ after extraction of the pr…

cond-mat.mtrl-sci201534 cited

Spin-lattice relaxation in bismuth chalcogenides

Robert E. Taylor, Belinda Leung, Michael P. Lake +1

Bismuth chalcogenides BiSe and BiTe are semiconductors, which can be both thermoelectric materials (TE) and topological insulators (TI). Lattice defects arising fro…

cond-mat.mtrl-sci201529 cited

A combined NMR and DFT study of Narrow Gap Semiconductors: The case of PbTe

Robert E. Taylor, Fahri Alkan, Dimitrios Koumoulis +4

In this study we present an alternative approach to separating contributions to the NMR shift originating from the Knight shift and chemical shielding by a combination of experimen…

physics.bio-ph201528 cited

Nanodiamond Landmarks for Subcellular Multimodal Optical and Electron Imaging

Mark A. Zurbuchen, Michael P. Lake, Sirus A. Kohan +2

There is a growing need for biolabels that can be used in both optical and electron microscopies, are non-cytotoxic, and do not photobleach. Such biolabels could enable targeted na…

cond-mat.soft201314 cited

Real-Time Maps of Fluid Flow Fields in Porous Biomaterials

Julia J. Mack, Khalid Youssef, Onika D. V. Noel +4

Mechanical forces such as fluid shear have been shown to enhance cell growth and differentiation, but knowledge of their mechanistic effect on cells is limited because the local fl…

cond-mat.mes-hall201351 cited

NMR Probe of Metallic States in Nanoscale Topological Insulators

Dimitrios Koumoulis, Thomas C. Chasapis, Robert E. Taylor +6

A 125Te NMR study of bismuth telluride nanoparticles as function of particle size revealed that the spin-lattice relaxation is enhanced below 33 nm, accompanied by a transition of…