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Two Dimensional Layered sentence examples within specific surface area
The enhanced photocatalytic performance for prepared hybrids could be mainly attributed to the following causes: the formed heterojunctions can contribute to the light absorption and separation of photogenerated electrons and holes, the two-dimensional layered structure facilitates the transmission and transfer of electrons, and high specific surface area could provide more exposed active sites.
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The unique three-dimensional flower-like structure of MOF-74 and two-dimensional layered double hydroxides (LDHs) nanosheets structure provide a larger specific surface area and improve the conductivity of the MOF-74(NiO).
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Two Dimensional Layered sentence examples within two dimensional layered material
The exploration of two dimensional layered materials (2DLMs) with atomic thickness and rich bandstructures has taken both the scientific and technological communities by storm during the past one and a half decade.
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Two Dimensional Layered sentence examples within two dimensional layered transition
Two dimensional layered transition metal dichalcogenides (TMDS) have immense potential as inexpensive electro-catalyst for hydrogen evolution reaction (HER).
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Two dimensional layered transition metal telluride can build stable metallic, metastable metallic or semimetallic polymorphic crystal structures with enormous technological and scientific applications.
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Two-dimensional layered semiconductor photocatalysts have attracted much attention due to their excellent performance.
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Transition metal dichalcogenides (TMDs) have attracted wide attention due to their quasi-two-dimensional layered structure and exotic properties.
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Controlled cracking of two-dimensional layered materials (2DLMs) can dramatically alter their crystallographic orientation, energy band gap, sheet resistance, and phonon softening.
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Since the era of graphene, two-dimensional layered materials (2DLMs) with distinctive physical, chemical and optoelectronic properties have attracted extensive attention from researchers worldwide.
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Many subwavelength crystals, such as metal nanoparticles and two-dimensional layered semiconductors, have been coupled with plasmonic nanostructures for augmented anti-Stokes luminescence through multiple-harmonic generation.
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The success of graphene and other two-dimensional layered materials opens the way for potential applications.
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Thus, in this study, an electrolyte-insulator-semiconductor (EIS) sensor based on aptamer-modified two-dimensional layered Ti3C2Tx nanosheets was developed for STX detection.
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At 296 K, the [H2dabco]2+ cation exists in a rotationally disordered state and is fixed into the two-dimensional layered structure of [Ma]− anions through N–H•••O hydrogen bonds.
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Piezoelectricity of two-dimensional layered materials is of great significance for electromechanical coupling applications in nanoelectromechanical systems.
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These materials can be grouped into three types in terms of their structural dimensions: (i) two-dimensional layered CaZnOS, SrZn2OS2, Sr8Ga8O3S14, Sr6Cd2Sb6O7S10 and Sr4Pb1.
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Two-dimensional layered black phosphorus (BP) has shown great potential in electronics and optoelectronics thanks to its adjustable direct band gap and high carrier mobility.
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Single crystal X-ray diffraction measurements revealed that both frameworks display a two-dimensional layered structure with a cyclic ring ligand which forms in situ from the condensation of two glyphosate molecules.
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Recently, a high-throughput computational screening of two-dimensional layered materials for thermoelectrics predicted that the layered FeOCl-type compounds with well-known photovoltaic and topological properties show the potential for thermoelectric (TE) applications.
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Two-dimensional layered hybrid organic/inorganic perovskites (2D HOIPs) support strongly bound excitons at room temperature with some of the highest oscillator strengths and electric loss tangents among the known excitonic materials.
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Doping modification as well as constructing two-dimensional layered structure of g-C3N4 are widely used as effective strategies to improve photocatalytic performance.
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To address these challenges, molybdenum sulfide (MoS2)-based active materials have been considered as promising anodes, owing to the two-dimensional layered structure of MoS2 for stably (de)inserting Na+.
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The enhanced photocatalytic performance for prepared hybrids could be mainly attributed to the following causes: the formed heterojunctions can contribute to the light absorption and separation of photogenerated electrons and holes, the two-dimensional layered structure facilitates the transmission and transfer of electrons, and high specific surface area could provide more exposed active sites.
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Transition metal dichalcogenides (TMDs) as a special group of two-dimensional layered compounds, have attracted great attention as cathode materials for the rechargeable zinc ion batteries (ZIBs).
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Based on the unique metal ion and organic ligand coordination of MOF and two-dimensional layered structure, the applications of two-dimensional MOF were getting serious, including catalysis, supercapacitor, gas adsorption/separation, sensors and so on.
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, high stability, suitable band structure, modifiable energy bandgap and two-dimensional layered structure capable of generating an internal electric field.
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Two-dimensional layered molybdenum disulfide and molybdenum trioxide (α-MoO3) have fascinating potential for complementary energy storage and conversion applications due to their high surface area and multiple oxidation states of Mo.
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Compound 1 shows two-dimensional layered structure constructed with triple-fused 4-rings (Zn4S4) motifs via corner-sharing oxygen atoms.
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Moreover, two-dimensional layered materials such as graphene, its derivatives, and transition metal dichalcogenides have been extensively investigated for a wide range of electronic and optoelectronic applications and have recently shown a synergistic effect in combination with hybrid perovskite materials.
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Molecular dynamics simulations reveal that the graphene formation is ascribed to two-dimensional layered feature of carbon nitride, and high compatibility of carbon nitride/glucose systems.
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), nickel-based materials (NiOx), and two-dimensional layered materials (MoS2, WS2, etc.
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Two-dimensional layered double hydroxides (LDHs), as abundant, cheap and bifunctional catalysts, have the similar electrocatalytic performance as precious metals, thereby receiving pretty much attention.
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Two-dimensional layered conductive material (MXene) filled polymer composite structures were prepared by implementing the solution casting technique.
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Recently, MXenes stand out as an attractive type of two-dimensional layered material.
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The proposed work provides an efficient ML method to screen and discover new AB2 typed two-dimensional layered materials for suppressing the shuttle effect in lithium-sulfur battery.
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The electrical and optical measurements indicate that synthesized γ-GeSe exhibits high electrical conductivity of 3 × 105 S/m, which is comparable to those of other two-dimensional layered semimetallic crystals.
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Structural defects play an important role in exploitation of two-dimensional layered materials (2DLMs) for advanced biosensors with the increasingly high sensitivity and low detection limit.
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Two-dimensional layered selenides have attracted intense attention in recent years because of their unique structures and physical properties.
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Next, CP-Fe3O4 was encapsulated by two-dimensional layered rGO to obtain CP-Fe3O4 composites with a three-dimensional structure.
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Defect engineering has recently been proven to have tremendous potential for improving the thermoelectric performance of topological materials with two-dimensional layered structures.
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MXene is a growing class of two-dimensional layered material that has been showed promising application in various energy storage and conversion technologies, due to its unique electrical, mechanical, surface and electrocatalytic properties.
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In this study, the two-dimensional layered porous silica material (EXVTM-SiO2) was designed and prepared by “expansion-acidification” modified vermiculite.
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LDHs are a class of two-dimensional layered anionic structures with unique properties [.
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B3+ mainly formed two-dimensional layered [BO3] and [BO4] tetrahedral.
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The unique three-dimensional flower-like structure of MOF-74 and two-dimensional layered double hydroxides (LDHs) nanosheets structure provide a larger specific surface area and improve the conductivity of the MOF-74(NiO).
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The spatial arrangement of heterostructures based on two-dimensional layered materials is important in controlling their electronic and optoelectronic properties.
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Understanding the limits of phononic heat dissipation from a two-dimensional layered material (2DLM) to its hexagonal boron nitride (h-BN) substrate and how it varies with the structure of the 2DLM is important for the design and thermal management of h-BN-supported nanoelectronic devices.
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These findings demonstrate a simple and practical method to prepare GO nanofiltration membranes with a two-dimensional layered structure to achieve the purification treatment of textile wastewater.
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Narrowbandgap two-dimensional layered materials (2DLMs) are considered as the promising candidates for constructing next-generation high-performance infrared photodetectors.
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Two-dimensional layered materials offer the possibility to create artificial vertically stacked structures possessing an additional degree of freedom—the interlayer twist.
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Except for two-dimensional layered materials, a reduction of thickness generally makes it difficult to develop topological character and ferromagnetic long-range order.
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The under-coordinated two-dimensional layered Ni clusters on molybdenum nitride support generated from the Ni-4nm/γ-Mo2N has been demonstrated to be a thermally stable catalyst in 50 h stability test, and exhibits a remarkable catalytic selectivity reverse compared with traditional Ni based catalyst, leading to a chemo-specific CO2 hydrogenation to CO.
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ABSTRACT Two-dimensional layered materials/flakes, also known as crystalline atom-thick layer nanosheets, have recently been receiving great attention in electronics fabrication due to their unique and intriguing properties.
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Recently, two-dimensional layered semiconductors caught attention due to their tuneable thickness dependent properties and its optoelectronic device applications.
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Our findings indicate that interlayer hybrid bonds in two-dimensional layered materials can be a promising approach to tailoring the MA property.
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In this work, combining low thermal conductivity of BiCuSeO and high electron carrier concentration of n-type Bi2O2Se, a new-type two-dimensional layered oxyselenide Bi6Cu2Se4O6 was synthesized.
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Layered double hydroxides (LDHs, a class of two-dimensional layered anion clay) possess several unique characteristics, such as the following: (1) tunable elemental component, homogeneous distribution of metal cations.
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Two-dimensional layered ferroelectric CuInP_{2}S_{6} is analyzed in detail as a typical example, but the theory can be applied to any other low-dimensional layered piezoelectrics.
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Triggered by the pioneering research on graphene, the family of two-dimensional layered materials (2DLMs) has been investigated for more than a decade, and appealing functionalities have been demonstrated.
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Among the recent advancement in the research of two-dimensional layered materials, alloying of transition metal dichalcogenides and control of its physical properties are drawing increasing attention.
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A two-dimensional layered supramolecular structure is formed by intermolecular interactions.
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Two-dimensional layered-structured Ti3C2Tx MXene was prepared with hydrochloric acid and LiF.
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Two-dimensional layered structure of rGO@Bi2O2CO3@NiCo-LDHs as positive material of supercapacitor is fabricated using the simple hydrothermal reaction, freeze-drying technology, and heat treatment process.
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Using dimensionless parameters to train and control the machine learning enables the use of a simple two-dimensional layered reservoir for training, while also exploring a wide range of the parameter space.
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The two-dimensional layered structure Ni-doped MoS2/rGO hybrid with heterostructure and heteroatom architecture defects not only plays a key role in adsorption of lithium polysulfide but also catalyzes on redox kinetics of sulfur and polysulfide species.
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Two-dimensional layered BiOCl is an important photocatalyst, which has had numerous studies focused on its oxygen vacancy (OV) and bismuth vacancy (BiV).
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As an extremely promising new class of materials, MXenes (two-dimensional layered materials) have attracted much interest and become a research hotspot in many fields.
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Herein, based on the unique two-dimensional layered structure in KBe2BO3F2 (KBBF), two new compounds, Sn2PO4I and Sn2BO3I, were designed and synthesized successfully, maintaining the layer structural feature and enhancing the optical anisotropy of crystals.
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Room temperature light emission from optically active defect centers in two-dimensional layered materials has attracted great interest in recent years owing to the critical applications in the field of quantum information technologies.
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Herein, three-dimensional ordered macroporous (3DOM) TiO2-supported two-dimensional layered MoS2 (MoS2/3DOM-TiO2) as two isolated photochemical systems were proposed to form heterojunction structure.
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WS2 is two-dimensional layered material which the electronic band gap is dependent on the number of layers.
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Two-dimensional layered materials such as graphene and transition metal dichalcogenides are promising candidates for developing high-density low-power next-generation memory.
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Inspired by the relationship between the structure and properties of chalcogenides, combined with the dimensional transformation, we successfully synthesized a sulfide compound (Cs2ZnSn3S8) with a two-dimensional layered structure and a large birefringence.
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The chains are then connected by cpa- ligands into a two-dimensional layered structure.
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