Molybdenum Disulfide (MoS2) is a member of the transition metal dichalcogenides (TMDC) family. Due to its natural availability as molybdenite, it is one of the most studied and celebrated TMDCs.
Like graphene, MoS2 has a similar two-dimensional layered structure - with each individual layer stacked upon each other to form the bulk single crystal. Each layer of MoS2 is composed of a plane of hexagonally-arranged molybdenum atoms, positioned between two planes of hexagonally-arranged sulfur atoms. Like graphite, each layer is bound are bound by weak van der Waals forces. Because of this, it is possible to obtain monolayer to few-layer crystal flakes from a bulk crystal via mechanical exfoliation (using scotch tape).
General Information
| CAS number | 1317-33-5 |
| Chemical formula | MoS2 |
| Molecular weight | 160.07 g/mol |
| Bandgap | 1.23 eV [1] |
| Synonyms | Molybdenum sulfide, Molybdenum disulphide. Molybdenum (IV) sulfide |
| Classification / Family | Transition metal dichalcogenides (TMDCs), 2D Semiconductor Materials, Nano-electronics, Nano-photonics, Materials science |
Product Details
| Form | Single Crystal |
| Preparation | Synthetic - Chemical Vapour Transport (CVT) |
| Purity | ≥ 99.999% |
| Structure | Hexagonal |
| Electronic properties | 2D Semiconductor |
| Melting point | 2375 °C (lit.) |
| Colour | Black / Dark brown |
Chemical Structure

Applications
MoS2 has an indirect band-gap of 1.23 eV for bulk single crystal or multi-layer films. However, single atomic layers have a direct band-gap of 1.9 eV. Due to its layered structure, MoS2 is highly anisotropic with excellent nonlinear optical properties. It is widely used as a high-performance lubricant.
As a result of its direct band-gap, single-layer MoS2 has received much interest for applications in electronic and optoelectronic devices (such as transistors, photodetectors, photovoltaics and light-emitting diodes). It is also being explored for applications in photonics, and can be combined with other TMDCs to create advanced heterostructured devices.
Synthesis
Molybdenum disulfide MoS2 is manufactured via chemical vapour transport (CVT) crystallisation, with purities of over 99.999% achieved.
Usage
Molybdenum disulfide MoS2 is used to create monolayer and few-layer MoS2 by mechanical or liquid exfoliation. Single crystals can also be studied using a range of microscopies (including AFM and TEM).
Viscoelastic transfer using PDMS
Further information
More information on the properties, applications, processing and range of products available for molybdenum disulfide (MoS2) is described on the MoS2 page.
MSDS Documentation
Molybdenum disulfide crystal MSDS sheet
Pricing
| Size | Product code | Size description* | Quantity (EA) | Price |
| Small | M2107A10 | 10 mm*10 mm | 1 | £357.00 |
| Medium | M2107A15 | 15 mm*15 mm | 1 | £637.00 |
| Large** | M2107A20 | 20 mm*20 mm | 1 | £861.00 |
* Typical representative size, areas/dimensions may vary
** Item with a lead time of 2-3 weeks, please contact for more information
Literature and Reviews
- Few-Layer MoS2: A Promising Layered Semiconductor, R. Ganatra et al., ACS Nano, 8 (5), 4074–4099 (2014); DOI: 10.1021/nn405938z.
- Atomically Thin MoS2: A New Direct-Gap Semiconductor, K. Mak et al., Phys. Rev. Lett. 105, 136805 (2015); DOI: 10.1103/PhysRevLett.105.136805.
- Shape-Uniform, High-Quality Monolayered MoS2 Crystals for Gate-Tunable Photoluminescence, X. Zhang et al., ACS Appl. Mater. Interfaces, 9, 42121−42130 (2017); DOI: 10.1021/acsami.7b14189.
- Photoluminescence from Chemically Exfoliated MoS2, G. Eda et al., Nano Lett., 11, 5111–5116 (2011); DOI: 10.1021/nl201874w.
- Fabrication of Single- and Multilayer MoS2 Film-Based Field-Effect Transistors for Sensing NO at Room Temperature, H. Li et al, Small, 8 (1), 63–67 (2012); DOI: 10.1002/smll.201101016.
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.
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求助各位前辈,我最近在合成的化合物水溶性很好,非常好,以至于可以随便溶解在水里,它的六氟磷酸盐也可以随意溶解在水里(大于50uM),细胞成像实验显示它根本进不去细胞,求问有没有啥方法包裹一下让它进去?我搜了一下文献,感觉多数是把脂溶性特别好的东西包裹一下弄进去的,也许是搜索姿势不对没找到我需要的答案,**点拨啊!!!
求助各位大神,现在想购买小分子数据库,求大神推荐。
我知道的免费的数据库有zinc
求推荐哪家公司或者研究所的小分子数据库可以购买,十分感谢!!!!!!
求助大家,小分子药物最新专利申请情况跟踪,之前听别人说可以在一个网站可以导出这个信息。
不知哪位大侠知道,告知一下,不胜感激!
就是蛋白质分子的小片断
是氨基酸形成的
一、首先你要明白肽是什么...........................肽是氨基酸通过酰胺键结合而成的东西.........
二、你要明白氨基酸是什么..........................氨基酸是构成蛋白质的基本单位,多种氨基酸结合为长肽链,几条长肽链再盘旋就形成了蛋白质......................
三、关于小分子肽、短肽、多肽、寡肽.......其实都是肽.......区别只是由多少个氨基酸构成而已............
所以,你的问题可以很粗暴地理解为“蛋白质对人体有没有副作用”.......
如果你营养足够的情况下,再补充这个,会导致营养过剩,从而加重身体代谢的负荷............类似就是这样子的了...........小分子肽,一般现在用于化妆品上比较多(一ye子.植物肽面膜就是这个).......小分子肽(可以简单理解为纳米胶原蛋白),这比蛋白质(也可以粗暴理解为胶原蛋白)更加容易吸收......而用在食品上,要视乎是何种小分子肽了.....大豆肽、花生肽、大米肽....不同的肽有不同的功效.......主要可以改善风味、改善吸收、增强胃肠道功能等等.......
有机的是有机化合物的简称,它指的是含碳化合物.
但是,有四大类常见物质一般不作为有机物处理:
1、碳的氧化物,如CO和CO2.
2、碳酸及其盐,如CaCO3.
3、金属碳化物,如CaC2.
4、拟卤素及其化合物,如(CN)2与KSCN.
水的化学式为H2O,它不含有碳元素,故不是有机物.
但若所描述的水不是化学意义的水,而是自然界存在的天然水,那么,水中会溶有一定量的有机物.

