2D Metals,二維納米材料:金屬 |
二維納米材料:金屬
2D Metals
2D Semiconductor公司主要生產(chǎn)各種二維納米材料,包括MoS, WS2, MoWS2, TlGaSe2, TlInS2, CuFeTe, FeTeSe, GePbSe, MoReS2, MoSSe, MoWS2, MoWSe2, ReNbS2, ReNbSe2, SbAsS3, WSSe, CuS, GaSeTe, GaSSe, Ges, InSe, SnSe, TlGaS2, TlGaSe2, TlInS2, GaS, GaSe, GaTe, GeSe, CoSe2, CoTe2, HfS2, HfSe2, MoS2, MoSe2, MoSSe, MoTe2, MoWS2, MoWSe2, ReS2, ReSe2, SnS2, SnSe2, SnTe2, TaS2, TaSe2, WS2, WSe2, WSSe, WTe2, ZrS2, ZrTe2, TiS3, CdI2, PbI2, As2S3, Bi2S3, Black Phosphorus, In2Se3, PbGa2Se4, PbSnS2, SbAsS3, VSe2, PtSe2, TiTe2, TiS2, TiSe2, NbS2, NbSe2, FeSe, FeTe, CuFeTe, FeTeSe, Ca(OH)2, h-BN, MICA, Mg(OH)2, Bi2S3, Bi2Se3, Bi2Se3, Bi2Se3, Bi2Te3, Bi2Se3(1-x)Te3x, Bi4Te3(1-x)S3x, MoSe2, WSe2, MoSe2, WSe2, WS2, Pb3Sn4, Sb2FeS14, Pb5Sn3Sb2S13。
Single Crystal Iron Telluride (FeTe) 碲化鐵
Single Crystal Iron Telluride (FeTe) 碲化鐵
Currently, 2D aspect of this material remains largely unexplored. Iron Telluride (FeTe) is a member of layered materials. The crystal structure of iron telluride consists of a continuous stacking of FeTe layers, where a square-lattice layer of iron atoms is sandwiched between two twice-sparser layers of bonding chalcogen atoms.
Single Crystal Iron Selenide Telluride (FeTeSe) 鐵碲硒
Single Crystal Iron Selenide Telluride (FeTeSe) 鐵碲硒
Superconductivity in monolayers. Currently, 2D aspect of this material remains largely unexplored. Iron Selenide Telluride (FeTeSe) is a member of layered materials. The crystal structure of iron selenide telluride consists of a continuous stacking of FeTeSe layers, where a square-lattice layer of iron atoms is sandwiched between two twice-sparser layers of bonding chalcogen atoms in P4nmm.
TiS2 二硫化鈦
Titanium disulfide (TiS2) 二硫化鈦
Titanium disulfide (TiS2) is a new member of transition metal dichalcogenide family. In bulk, it is semi-metal with high electrical conductivity. It is perfectly layered and is ideal for monolayer production with 80% monolayer production rate. The crystals are large size giving you extra materials to work with.
TiSe2 二硒化鈦
Titanium disulfide (TiSe2) 二硒化鈦
Titanium disulfide (TiSe2) is a new member of transition metal dichalcogenide family. In bulk, it is a semi-metal with high electrical conductivity. Depending on the measurement technique, it is also claimed to be narrow gap semiconductor as well. It is perfectly layered and is ideal for monolayer production with 80% monolayer production rate. The crystals are large size giving you extra materials to work with.
NbS2 硫化鈮
Niobium Disulfide (NbS2) 硫化鈮
NbS2 is another member of transition metal dichalcogenide family. Similar to graphene and molybdenum disulfide (MoS2), NbS2 is also a layered material and can be isolated to monolayers. NbS2 is rather metallic with splendid and rich physical properties somewhat similar to graphene. Monolayers are yet to be discovered.
Crystals come ready for exfoliation and are ideal for your 2D research.
Single Crystal Iron Selenide (FeSe) 硒化鐵
Single Crystal Iron Selenide (FeSe) 硒化鐵
Superconductivity in monolayers. Currently, 2D aspect of this material remains largely unexplored. Iron Selenide (FeSe) is a member of layered materials. The crystal structure of iron selenide consists of a continuous stacking of FeSe layers, where a square-lattice layer of iron atoms is sandwiched between two twice-sparser layers of bonding chalcogen atoms in P4nmm.
CuFeTe crystals
CuFeTe crystals
New dimensions in 2D superconductors research: CuFeTe is unique material with highest Tc temperature in layered materials. Cu atoms are perfectly incorporated into FeTe matrix (see http://www.2dsemiconductors.com/Single-Crystal-Iron-Telluride-FeTe-p/iron-telluride.htm ). These alloys are not phase separated meaning Fe and Cu atoms randomly distributed throughout the crystals. Cu concentration is set to 50% (Cu1Fe1Te)
NbSe2 二硒化鈮
Niobium Diselenide (NbSe2) 二硒化鈮
NbSe2 is another member of transition metal dichalcogenide family. Similar to graphene and molybdenum disulfide (MoS2), NbSe2 is also a layered material and can be isolated to monolayers. NbSe2 is rather metallic with splendid and rich physical properties somewhat similar to graphene. Monolayers are yet to be discovered.
Crystals come ready for exfoliation and are ideal for your 2D research.
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