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[HTML][HTML] Hexagonal boron nitride monolayers on metal supports: Versatile templates for atoms, molecules and nanostructures
W Auwärter - Surface Science Reports, 2019 - Elsevier
Hexagonal boron nitride (hBN) monolayers have attracted considerable interest as
atomically thin sp 2-hybridized sheets that are readily synthesized on various metal …
atomically thin sp 2-hybridized sheets that are readily synthesized on various metal …
From dynamic self-assembly to networked chemical systems
Although dynamic self-assembly, DySA, is a relatively new area of research, the past
decade has brought numerous demonstrations of how various types of components–on …
decade has brought numerous demonstrations of how various types of components–on …
Uniform and ultrathin high-κ gate dielectrics for two-dimensional electronic devices
Two-dimensional semiconductors could be used as a channel material in low-power
transistors, but the deposition of high-quality, ultrathin high-κ dielectrics on such materials …
transistors, but the deposition of high-quality, ultrathin high-κ dielectrics on such materials …
Bicomponent supramolecular architectures at the vacuum–solid interface
X Bouju, C Mattioli, G Franc, A Pujol… - Chemical …, 2017 - ACS Publications
This review aims at giving the readers the basic concepts needed to understand two-
dimensional bimolecular organizations at the vacuum–solid interface. The first part …
dimensional bimolecular organizations at the vacuum–solid interface. The first part …
Precise, self-limited epitaxy of ultrathin organic semiconductors and heterojunctions tailored by van der Waals interactions
B Wu, Y Zhao, H Nan, Z Yang, Y Zhang, H Zhao… - Nano Letters, 2016 - ACS Publications
Precise assembly of semiconductor heterojunctions is the key to realize many optoelectronic
devices. By exploiting the strong and tunable van der Waals (vdW) forces between …
devices. By exploiting the strong and tunable van der Waals (vdW) forces between …
Chemical and entropic control on the molecular self-assembly process
DM Packwood, P Han, T Hitosugi - Nature communications, 2017 - nature.com
Molecular self-assembly refers to the spontaneous assembly of molecules into larger
structures. In order to exploit molecular self-assembly for the bottom-up synthesis of …
structures. In order to exploit molecular self-assembly for the bottom-up synthesis of …
Ordering and dynamics for the formation of two-dimensional molecular crystals on black phosphorene
Phosphorene, a monolayer of elemental phosphorus, has emerged as the most important
2D atomic crystal post graphene. As a consequence of its suitable direct band gap, it has …
2D atomic crystal post graphene. As a consequence of its suitable direct band gap, it has …
van der Waals epitaxy of organic semiconductor thin films on atomically thin graphene templates for optoelectronic applications
Conspectus Organic semiconductors (OSCs) offer unique advantages with respect to
mechanical flexibility, low-cost processing, and tunable properties. The optical and electrical …
mechanical flexibility, low-cost processing, and tunable properties. The optical and electrical …
Self-organized growth and self-assembly of nanostructures on 2D materials
Abstract Two-dimensional (2D) composite materials have gained much interest, and their
synthesis and characterization have been intensively investigated to fully exploit the new …
synthesis and characterization have been intensively investigated to fully exploit the new …
Millimeter-sized two-dimensional molecular crystalline semiconductors with precisely defined molecular layers via interfacial-interaction-modulated self-assembly
The newly emerging field in organic electronics is to control the molecule–substrate
interface properties at a two-dimensional (2D) limit via interfacial interactions, which paves …
interface properties at a two-dimensional (2D) limit via interfacial interactions, which paves …