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Phosphorene FET Market Size & Share - Industry Trend and Forecast 2016 - 2024

Phosphorene FET Market Size & Share - Industry Trend and Forecast

MarketResearchReports.Biz announces addition of new report "Phosphorene FET Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 - 2024" to its database.

The main objective of this report is to define, describe, and forecast the global “Phosphorene FET ” market on the basis of types of applications, major sectors, deployment models, organization size, and regions. The report contains an analysis of the major factors influencing the growth of the market (drivers, restraints, opportunities, and challenges). It aims to strategically analyze the micromarkets with respect to individual growth trends, prospects, and their contribution to the market. The report attempts to forecast the market size for 5 major regions, namely, North America, Europe, Asia Pacific (APAC), Middle East and Africa (MEA), and Latin America. It contains key vendor profiles and comprehensively analyzes their core competencies. The report also tracks and analyzes competitive developments, including partnerships, collaborations, acquisitions, new product developments, and R&D activities in the market.

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Phosphorene is an allotrope of phosphorus and two dimensional in nature. It can be viewed as a single layer of phosphorus and is very similar to graphene in nature. Researchers are fabricating transistors of phosphorene to understand their performance in electronic devices. Phosphorene field effect transistors (FET) are being studied for its application in semiconductors in future. The market for phosphorene FET is expected to witness robust growth in future.

The growing demand for high performance devices has created a demand for additional layered material. Phosphorene has several characteristics which makes it preferable over graphene and is expected to replace graphene in the semiconductor industry. Phosphorene has higher carrier mobility and hence is considered to be a better conductor of electricity. This property is making phosphorene to be preferred in the semiconductor industry. Moreover, the material is highly optical and can absorb UV light easily. This factor is expected to the drive the market for phosphorus in the optoelectronic sector. Furthermore, the recent demand for energy efficient semiconductor is aiding to need for alternatives like phosphorene. In addition, black phosphorus has a stack layered structure with weak van der Waals (vdWs) interlayer interaction and hence considered as the most stable allotrope. This property of phosphorus made it popular in the semiconductor industry and it is expected to be used in photovoltaics, optoelectronics and electronics in future. Phosphorene has an anisotropic orthorhombic structure which enables it to have dual properties. In an in-plane crystal direction, it has a ductile nature, which is very flexible and stiff along the other side. The technological shift in future is expected to create a virtual smart environment with interconnected devices. This is expected to surge the demand for internet of things (IoT) industry. Furthermore, the IoT is primarily dependant on smart electronics which are capable or recording and transmitting data. The advent of IoT is creating the need of high performance and energy efficient devices. The properties of semiconductors play a major role in determining the performance of devices. Phosphorene being a good conductor of electricity along with its capability of absorbing UV lights is expected to increase its demand in semiconductor industry. Hence the market for Phosphorene FET is expected to grow in the next few years.

However, the market is still a premature stage and constant research is being conducted to understand the reliability of phosphorene FET in electronic devices. Hence, the application of phosphorene FET is expected to take time. Moreover, there are no suppliers or manufacturers of phosphorene FET for its commercial usage.

The phosphorene FET market is in its initial stage and can be segmented by application and geography. By application, phosphorene FET can be used in the electronics, optoelectronics, spintronics and photovoltaics among others. The easy availability of phosphorus and the high conductivity makes is a better choice in the semiconductor industry when compared to graphene. Furthermore, the market can be divided by geography into North America, Europe, Asia Pacific, Middle East & Africa and Latin America regions. Since the phosphorene FET in under research and development stage, it is expected to witness robust growth in North America and Europe due the demand for new technology in these regions. Moreover, region hosts a number of developed countries like the U.S., U.K and Germany which are technologically well equipped for adapting the new technology. However, Asia Pacific region is expected to grow fast at a later stage due to the presence of developing nations like China and India who are witnessing constant investment in research and development of new technology. Hence the market for Phosphorene FET is expected to witness strong growth globally.

The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.

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The study is a source of reliable data on:

Market segments and sub-segments
Market trends and dynamics
Supply and demand
Market size
Current trends/opportunities/challenges
Competitive landscape
Technological breakthroughs
Value chain and stakeholder analysis
The regional analysis covers:

North America (U.S. and Canada)
Latin America (Mexico, Brazil, Peru, Chile, and others)
Western Europe (Germany, U.K., France, Spain, Italy, Nordic countries, Belgium, Netherlands, and Luxembourg)
Eastern Europe (Poland and Russia)
Asia Pacific (China, India, Japan, ASEAN, Australia, and New Zealand)
Middle East and Africa (GCC, Southern Africa, and North Africa)
The report has been compiled through extensive primary research (through interviews, surveys, and observations of seasoned analysts) and secondary research (which entails reputable paid sources, trade journals, and industry body databases). The report also features a complete qualitative and quantitative assessment by analyzing data gathered from industry analysts and market participants across key points in the industry’s value chain.

A separate analysis of prevailing trends in the parent market, macro- and micro-economic indicators, and regulations and mandates is included under the purview of the study. By doing so, the report projects the attractiveness of each major segment over the forecast period.

Highlights of the report:

A complete backdrop analysis, which includes an assessment of the parent market
Important changes in market dynamics
Market segmentation up to the second or third level
Historical, current, and projected size of the market from the standpoint of both value and volume
Reporting and evaluation of recent industry developments
Market shares and strategies of key players
Emerging niche segments and regional markets
An objective assessment of the trajectory of the market
Recommendations to companies for strengthening their foothold in the market

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