High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to the scalable fabrication of highly performing devices. Because the ultrathin limit cannot be reached for traditional semiconductors, identifying new two-dimensional materials with both high carrier mobility and a large electronic bandgap is a pivotal goal of fundamental research(1-9). However, air-stable ultrathin semiconducting materials with superior performances remain elusive at present(10). Here, we report ultrathin films of non-encapsulated layered Bi2O2Se, grown by chemical vapour deposition, which demonstrate excellent air stability and high-mobility semiconducting behaviour. We observe bandgap values of similar to 0.8 eV, which are st...
Semiconductor Bi2O2Se nanolayers of high crystal quality have been realized via epitaxial growth. Th...
A topological insulator (TI) represents an unconventional quantum phase of matter with insulating bu...
\ua9 2018 The Royal Society of Chemistry. Many applications of topological insulators (TIs) as well ...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
Bi2O2Te has the smallest effective mass and preferable carrier mobility in the Bi2O2X (X = S, Se, Te...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
The air-stable and high-mobility two-dimensional (2D) Bi2O2Se semiconductor has emerged as a promisi...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
Ternary metal-oxy-chalcogenides are emerging as next-generation layered semiconductors beyond binary...
Emerging two-dimensional (2D) semiconducting materials serve as promising alternatives for next-gene...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Recently, a second-type two-dimensional (2D) semiconductor Bi2O2Se with high carrier mobility was su...
Systematic electrical transport characterizations were performed on high-quality Bi2O2Se nanowires t...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
Semiconductor Bi2O2Se nanolayers of high crystal quality have been realized via epitaxial growth. Th...
A topological insulator (TI) represents an unconventional quantum phase of matter with insulating bu...
\ua9 2018 The Royal Society of Chemistry. Many applications of topological insulators (TIs) as well ...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
Bi2O2Te has the smallest effective mass and preferable carrier mobility in the Bi2O2X (X = S, Se, Te...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
The air-stable and high-mobility two-dimensional (2D) Bi2O2Se semiconductor has emerged as a promisi...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
Ternary metal-oxy-chalcogenides are emerging as next-generation layered semiconductors beyond binary...
Emerging two-dimensional (2D) semiconducting materials serve as promising alternatives for next-gene...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Recently, a second-type two-dimensional (2D) semiconductor Bi2O2Se with high carrier mobility was su...
Systematic electrical transport characterizations were performed on high-quality Bi2O2Se nanowires t...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
Semiconductor Bi2O2Se nanolayers of high crystal quality have been realized via epitaxial growth. Th...
A topological insulator (TI) represents an unconventional quantum phase of matter with insulating bu...
\ua9 2018 The Royal Society of Chemistry. Many applications of topological insulators (TIs) as well ...