Nanosize pores can turn semimetallic graphene into a semiconductor and, from being impermeable, into the most efficient molecular-sieve membrane. However, scaling the pores down to the nanometer, while fulfilling the tight structural constraints imposed by applications, represents an enormous challenge for present top-down strategies. Here we report a bottom-up method to synthesize nanoporous graphene comprising an ordered array of pores separated by ribbons, which can be tuned down to the 1-nanometer range. The size, density, morphology, and chemical composition of the pores are defined with atomic precision by the design of the molecular precursors. Our electronic characterization further reveals a highly anisotropic electronic structure,...
The ‘graphene rush’ that started almost a decade ago is far from over. The dazzling properties of gr...
Narrow atomically precise graphene nanoribbons hold great promise for electronic and optoelectronic ...
14 pages. -- PDF includes: 1 Methods. -- 1.1 Synthesis of the molecular precursors. -- 1.2 Sample pr...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
Graphene is a two-dimensional, atomic thin, usually impermeable nanomaterial with astonishing electr...
The incorporation of nanoscale pores into a sheet of graphene allows it to switch from an impermeabl...
Resumen del trabajo presentado a la Grenoble-Barcelona twin conference: From quantum systems to new ...
Functionalization of electrodes is a wide-used strategy in various applications ranging from single-...
Incorporation of a high density of molecular-sieving nanopores in the graphene lattice by the bottom...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Neumann C, Kaiser D, Mohn MJ, et al. Bottom-Up Synthesis of Graphene Monolayers with Tunable Crystal...
The precise introduction of nonplanar pores in the backbone of graphene nanoribbon represents a grea...
Single-layer graphene (SLG) membranes, hosting molecular-sieving nanopores have been regarded as the...
On-surface synthesis provides an effective approach toward the formation of graphene nanostructures ...
Nanoporous graphene was proposed as an efficient material for reverse osmosis water desalination mem...
The ‘graphene rush’ that started almost a decade ago is far from over. The dazzling properties of gr...
Narrow atomically precise graphene nanoribbons hold great promise for electronic and optoelectronic ...
14 pages. -- PDF includes: 1 Methods. -- 1.1 Synthesis of the molecular precursors. -- 1.2 Sample pr...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
Graphene is a two-dimensional, atomic thin, usually impermeable nanomaterial with astonishing electr...
The incorporation of nanoscale pores into a sheet of graphene allows it to switch from an impermeabl...
Resumen del trabajo presentado a la Grenoble-Barcelona twin conference: From quantum systems to new ...
Functionalization of electrodes is a wide-used strategy in various applications ranging from single-...
Incorporation of a high density of molecular-sieving nanopores in the graphene lattice by the bottom...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Neumann C, Kaiser D, Mohn MJ, et al. Bottom-Up Synthesis of Graphene Monolayers with Tunable Crystal...
The precise introduction of nonplanar pores in the backbone of graphene nanoribbon represents a grea...
Single-layer graphene (SLG) membranes, hosting molecular-sieving nanopores have been regarded as the...
On-surface synthesis provides an effective approach toward the formation of graphene nanostructures ...
Nanoporous graphene was proposed as an efficient material for reverse osmosis water desalination mem...
The ‘graphene rush’ that started almost a decade ago is far from over. The dazzling properties of gr...
Narrow atomically precise graphene nanoribbons hold great promise for electronic and optoelectronic ...
14 pages. -- PDF includes: 1 Methods. -- 1.1 Synthesis of the molecular precursors. -- 1.2 Sample pr...