Recently, a second-type two-dimensional (2D) semiconductor Bi2O2Se with high carrier mobility was successfully fabricated by using the chemical vapor deposition (CVD) method. So far the surface-related property of Bi2O2Se remains a mystery to us. To theoretically explore such surface properties, we investigated the stability and electronic structure of the Bi2O2Se (100) and (110) surfaces by first-principles computations. It is found that (100) surfaces possess both the semiconducting nature and comparable stability as traditional adopted (001) surfaces. Thickness-dependent oscillation behavior is observed in the surface energy and band gap values of (100) surfaces, which can be attributed to the odd-even layer effect. Further studies indic...
Few layer bismuth nanofilms with (111) orientation have shown striking electronic properties, especi...
The understanding and engineering of bismuth (Bi) containing semiconductor surfaces are signi cant ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).A bilayer of bismuth is reco...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
A new type of two-dimensional layered semiconductor with weak electrostatic but not van der Waals in...
This thesis investigates the properties of bismuth (Bi) nanostructures on a fundamental level and in...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
Heterostructures of two-dimensional layered materials can be functionalized with exotic phenomena th...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).-- et al.We present a surfac...
Two-dimensional (2D) topological insulators have fascinating physical properties which are promising...
We report a joint experimental and theoretical study of the structural, vibrational, elastic, optica...
Few layer bismuth nanofilms with (111) orientation have shown striking electronic properties, especi...
The understanding and engineering of bismuth (Bi) containing semiconductor surfaces are signi cant ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).A bilayer of bismuth is reco...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
A new type of two-dimensional layered semiconductor with weak electrostatic but not van der Waals in...
This thesis investigates the properties of bismuth (Bi) nanostructures on a fundamental level and in...
Bi2O2Se is an emerging semiconducting, air-stable layered material (Nat. Nanotechnol. 2017, 12, 530;...
Non-neutral layered crystals, another group of two-dimensional (2D) materials that lack a well-defin...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
High-mobility semiconducting ultrathin films form the basis of modern electronics, and may lead to t...
Heterostructures of two-dimensional layered materials can be functionalized with exotic phenomena th...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).-- et al.We present a surfac...
Two-dimensional (2D) topological insulators have fascinating physical properties which are promising...
We report a joint experimental and theoretical study of the structural, vibrational, elastic, optica...
Few layer bismuth nanofilms with (111) orientation have shown striking electronic properties, especi...
The understanding and engineering of bismuth (Bi) containing semiconductor surfaces are signi cant ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).A bilayer of bismuth is reco...