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当前位置: 首页 > 产品中心 > Small_molecule > Ossila/VSe2 - Vanadium Diselenide | 12299-51-3/Vanadium Diselenide Powder / 1 g/Small (≥10mm^2)
商品详细Ossila/VSe2 - Vanadium Diselenide | 12299-51-3/Vanadium Diselenide Powder / 1 g/Small (≥10mm^2)
Ossila/VSe2 - Vanadium Diselenide | 12299-51-3/Vanadium Diselenide Powder / 1 g/Small (≥10mm^2)
Ossila/VSe2 - Vanadium Diselenide | 12299-51-3/Vanadium Diselenide Powder / 1 g/Small (≥10mm^2)
商品编号: Small(≥10mm^2)
品牌: Ossila inc
市场价: ¥0.00
美元价: 0.00
产地: 美国(厂家直采)
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产品分类: 小分子
公司分类: Small_molecule
联系Q Q: 3392242852
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商品介绍

Low price, high purity 2D metal vanadium diselenide powder and crystals

For the development of next-generation electronics, optoelectronics, and nanotechnology

Vanadium diselenide (VSe2) is a TMDC material. With a sandwiched layer structure, its layers are bound by weak van de Waals forces which allow the isolation of each layer from its bulk crystals (or powder) to reduce the dimensionality - by either mechanical or chemical exfoliation.

In bulk form VSeis paramagnetic. It commonly condenses in the 1T structure, which is metallic with no optical bandgap. Monolayer VSe2 has magnetic characteristics and a lower work-function at its edge. However, strong room-temperature ferromagnetism has been observed in VSe2 monolayers grown on van der Waals substrates such as graphite.

We supply low price vanadium diselenide in several different forms for a range of applications.

Vanadium diselenide powder

Vanadium diselenide powder

Can be used for preparation of vanadium diseleinde nanoplates nano-platelets and ultrathinthin films

Sold by weight

≥ 99.995% purity

From £169.00

Vanadium diselenide crystals by size

Vanadium diselenide crystals

Can be used to produce single or few-layer vanadium diselenide sheets via mechanical or liquid exfoliation

Small (≥10mm2) or medium (≥25mm2) crystals available*

≥ 99.999% purity

From £396.00

*Typical representative size, areas/dimensions may vary

Bulk single vanadium diselenide crystals are most commonly used as sources from which single or few-layer sheets can be obtained via either mechanical or liquid exfoliation. Single vanadium diselenide crystal or films produced from such crystals are suitable for study using atomic force microscopy or transmission electron microscopy

Platinum FET test chips optimized for 2D materials

Perform electrical and optical measurements without expensive lithography equipment

  • Platinum FET test chips optimized for 2D materials, just £149.00
  • Developed with researchers in the field to speed up research
  • Simplifies electrical measurements on small 2D crystals
  • Transfer your crystal across the channel and start measuring

Vanadium diselenide powder can also be used to prepare VSe2 nanosheets and nanoparticles by liquid-exfoliation (normally assisted by sonication), especially when it is the case of foreign elements such as lithium or sodium cations being inserted between layers by the process of intercalation. Liquid exfoliation can provide mass production of such products.

Key Product Data

  • High purity, low price vanadium diselenide
  • Available as a powder or as individual crystals
  • Can be used to produce single or few-layer sheets
  • Free worldwide shipping on qualifying orders

Structure and Properties of 2D Vanadium Diselenide

After exfoliation of crystals or powder, vanadium diselenide typically has the following properties:

  • ‎Octahedral (1T) structure (space group: P63mc)
  • Bulk 1T-VSe2 is a metal and has no bandgap
  • VSe2 shows unique three-dimensional (3D) CDW properties below 110K and thickness dependence of the CDW transition temperature (Tp)
  • Monolayer VSe2 has magnetic characteristics and a lower work-function at its edge

Applications of Vanadium Diselenide

Vanadium diselenide single crystals can be used to prepare monolayer and few-layer VSe2 by mechanical or liquid exfoliation. 

Vanadium diselenide powder is suitable for liquid chemical exfoliation to prepare VSe2 nanosheets and nanoparticles down to few-layer films. 2D VSe2 nanosheets (NSs) can be successfully produced via an ultrasonication-assisted lithium intercalation process using lithium carbonate in a colloidal solution of NPs. VSe2 powder is also used for the preparation of mono-layer and few-layer films via chemical vapour deposition (CVD).

The metallic properties of vanadium diselenide contribute to its potential for applications in supercapacitors and lithium-ion and sodium-ion batteries such as electrodes, moisture-detection sensors, and electrocatalysts for hydrogen revolution reactions (HER).

Technical Data

CAS number‎12299-51-3 
Chemical formulaVSe2
Molecular weight208.86 g/mol
Bandgap~ 1.4 eV (indirect)
PreparationSynthetic - Chemical Vapour Transport (CVT)
StructureOctahedral (1T)
Electronic propertiesMetal
Melting pointn.a.
ColourDark brown
SynonymsVanadium selenide, Bis(selanylidene)vanadium
Classification / FamilyTransition metal dichalcogenides (TMDCs), 2D Semiconductor materials, Charge Density Wave (CDW), Hydrogen Revolution Reactions (HER), Nano-electronics, Nano-photonics, Photovoltaic, Materials science

Product Details

FormPurity
Vanadium Diselenide Powder≥ 99.995%
Vanadium Diselenide Crystal≥ 99.999%

MSDS Documents

Vanadium diselenide powder MSDSVanadium diselenide powder

Vanadium diselenide crystal MSDSVanadium diselenide crystal

Structure of Vanadium Diselenide

In nature, vanadium diselenide (VSe2) exists only in 1T as its thermodynamically-stable phase (space group: P63mc). Single-layer VSe2 film consists of stacks of one layer of hexagonally close-packed transition metal vanadium atoms sandwiched between two layers of chalcogen selenium atoms in the sequence of Se–V–Se. The metal atoms are octahedrally coordinated and covalently bonded to the chalcogen atoms. The layers are stacked together by van der Waals (vdW) forces. Like black phosphorus and MoSe2, these can be exfoliated into 2D thin layers.

top and side view of valadium diselenide structure
Top and side view of single-layer vanadium diselenide (VSe2)

Applications of Vanadium Diselenide

Vanadium diselenide single crystals can be used to prepare monolayer and few-layer VSe2 by mechanical or liquid exfoliation. 

Vanadium diselenide powder is suitable for liquid chemical exfoliation to prepare VSe2 nanosheets and nanoparticles down to few-layer films. 2D VSe2 nanosheets (NSs) can be successfully produced via an ultrasonication-assisted lithium intercalation process using lithium carbonate in a colloidal solution of NPs. Vanadium diselenide powder is also used to study its electronic and heat transport, electronic band structure and charge-density wave (CDW) properties with alkali-metal-intercalated 2D VSe2 heterostructures.The metallic properties of vanadium diselenide contribute to its potential for applications in supercapacitors and lithium-ion and sodium-ion batteries such as electrodes, moisture-detection sensors, and electrocatalysts for hydrogen revolution reactions (HER).


Video by Ossila

Pricing Table (All)

FormSize/Weight*Product CodePrice
Powder1 gM2154C1£269.00
CrystalSmall (≥ 10 mm2)M2154A10£395.00 ea.
CrystalMedium (≥ 25 mm2)M2154A25£638.00 ea.

*typical representative size, areas/dimensions may vary

Shipping is free for qualifying orders.

Literature and Reviews

  • Field-Effect Tuned Adsorption Dynamics of VSe2 Nanosheets for Enhanced Hydrogen Evolution Reaction, M. Yan et al., Nano Lett. 2017, 17, 4109−4115 (2017); DOI: 10.1021/acs.nanolett.7b00855.
  • Electronic Structure and Enhanced Charge-Density Wave Order of Monolayer VSe2, J. Feng et al., Nano Lett., 18, 4493−4499 (2018); DOI: 10.1021/acs.nanolett.8b01649.
  • Emergence of a Metal−Insulator Transition and High-Temperature Charge-Density Waves in VSe2 at the Monolayer Limit, G, Duvjir et al.,  Nano Lett. 2018, 18, 5432−5438 (2018); DOI: 10.1021/acs.nanolett.8b01764.
  • Chemical Vapor Deposition of 2D Vanadium Disulfide and Diselenide and Raman Characterization of the Phase Transitions, M. Hossain et al, Adv. Mater. Interfaces, 5, 1800528 (2018); DOI: 10.1002/admi.201800528.
  • Versatile Electronic Properties of VSe2 Bulk, Few-Layers, Monolayer, Nanoribbons, and Nanotubes: A Computational Exploration, F. Li et al., J. Phys. Chem. C, 118, 21264−21274 (2014); doi: 10.1021/jp507093t.
  • Strong room-temperature ferromagnetism in VSe2 monolayers on van der Waals substrates, M. Bonilla et al., Nat.Nanotech., 13, 289–293 (2018); DIO: 10.1038/s41565-018-0063-9.
  • Thickness dependence of the chargedensity-wave transition temperature in VSe2, J. Yang et al., Appl. Phys. Lett. 105, 063109 (2014); DIO: 10.1063/1.4893027.
  • Strain and interlayer coupling tailored magnetic properties and valley splitting in layered ferrovalley 2H-VSe2, S. Feng et al., Appl. Surf. Sci., 458, 191–197 (2018); DIO: 10.1016/j.apsusc.2018.07.070.
  • Epitaxially grown monolayer VSe2: an air-stable magnetic two-dimensional material with low work function at edges, Z. Liu et al., Sci. Bull., 63, 419–425 (2018); DIO: 10.1016/j.scib.2018.03.008.
  • Intrinsic valley polarization of magnetic VSe2 monolayers, J. Liu et al., J. Phys.: Condens. Matter, 29, 255501 (2017); DIO: 10.1088/1361-648X/aa6e6e.
  • Dimensional crossover of the charge density wave transition in thin exfoliated VSe2, A. Pásztor et al., 2D Mater., 4, 041005 (2017); DIO: 10.1088/2053-1583/aa86de.
  • Metallic Graphene-Like VSe2 Ultrathin Nanosheets: Superior Potassium-Ion Storage and Their Working Mechanism, C. Yang et al., Adv. Mater., 30, 1800036 (2018); DOI: 10.1002/adma.201800036.
  • Catalytic Properties of Vanadium Diselenide: A Comprehensive Study on Its Electrocatalytic Performance in Alkaline, Neutral, and Acidic Media, T. Ghobadi et al., ACS Omega, 2, 8319−8329 (2017); DOI: 10.1021/acsomega.7b01226.

To the best of our knowledge the technical information provided here is accurate. However, Ossila assume no liability for the accuracy of this information. The values provided here are typical at the time of manufacture and may vary over time and from batch to batch.

品牌介绍
关于奥西拉 Ossila由有机电子研究科学家于2009年成立,旨在提供组件,设备和材料,以实现智能,高效的科学研究和发现。十多年来,我们很自豪能向全球80多个国家/地区的1000多个不同机构提供产品。 凭借在开发有机和薄膜LED,光伏和FET方面数十年的学术和工业经验,我们知道建立可靠,高效的器件制造和测试过程需要花费多长时间。因此,我们开发了相关的产品和服务包-使研究人员能够快速启动其有机电子产品开发计划。 奥西拉保证 全球免费送货 合格的订单可免费运送到世界任何地方 快速安全调度 通过安全跟踪的快递服务快速配送库存物品 质量保证 由所有设备的免费两年保修提供支持 清除前期定价 超过30种货币的清晰定价,无隐藏成本 大订单折扣 保存超过订单8% $ 10,300.00和10%以上的订单 $ 12,900.00 专家支持 我们内部的科学家和工程师随时准备为您提供帮助 全球信赖 优质的产品和服务。已经向很多人推荐。 卡尔加里大学Gregory Welch博士 优质产品价格合理的客户友好公司! Shahriar Anwar,亚利桑那州立大学 奥西拉团队 David Lidzey教授-主席 作为谢菲尔德大学的物理学教授,David Lidzey教授领导该大学的电子和光子分子材料研究小组(EPMM)。David在其职业生涯中,曾在学术和技术环境中工作,主要研究领域包括混合有机-无机半导体材料和器件,有机光子器件和结构以及溶液处理的光伏器件。在整个学术生涯中,他撰写了220多篇同行评审论文。 James Kingsley博士-董事总经理 James是Ossila的联合创始人兼董事总经理。他拥有量子力学/纳米技术博士学位,并在有机电子领域拥有超过12年的经验,他在有机光伏制造产能方面的工作导致了Ossila的成立并建立了强大的指导精神:加快科学发现的步伐。James对开发创新的设备以及改善可溶液加工的光伏和混合有机-无机设备新材料的可及性特别感兴趣。 Alastair Buckley博士-技术总监 Alastair是谢菲尔德大学的物理学讲师,专门研究有机电子学和光子学。他还是EPMM研究小组的成员,致力于研究功能有机材料的内在优势并将其应用到一系列光电设备中。Alastair的经验并非仅在学术界获得。他曾领导MicroEmissive Displays的研发团队,因此在OLED显示器方面拥有丰富的技术经验。他还是Elsevier的“有机发光二极管”的编辑和撰稿人。 我们的研究科学家 我们的研究科学家和产品开发人员在材料的合成和加工以及设备的制造和测试方面拥有丰富的经验。奥西拉(Ossila)的愿景是与学术界和工业界的研究人员分享这一经验,并提高他们的研究效率。通过提供无需费力设备制造过程的产品和服务,以及能够进行准确,快速测试的设备,我们就可以使科学家们腾出时间专注于他们最擅长的工作-科学。 客户服务团队 客户服务团队负责奥西拉的客户旅程。从创建和提供报价到采购和库存管理,客户服务团队致力于提供一流的客户服务。客户服务团队成员的日常职责包括处理客户订单和价格查询,回答客户查询,安排包裹运输以及将订单更新通知客户。 合作与伙伴关系 请联系客户服务团队以解决所有疑问,包括有关Ossila产品的技术问题或有关制造和测量过程的建议。 位置及设施 奥西拉(Ossila)设在谢菲尔德阿特克利夫(Attercliffe)的Solpro商业园区。 我们在现场运营一个专门建造的合成化学和设备测试实验室,在这里制造我们所有的高纯度,批次特定的聚合物和其他配方。此外,设备制造集群内的专用薄膜和有机电子测试与分析工具套件也位于谢菲尔德EPSRC国家外延设施的1000级无尘室中。 我们所有的电子设备均在现场制造。