Graphene Oxide (GO) Market Insights, Forecast to 2025

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Graphene Oxide (GO)

This report researches the worldwide Graphene Oxide (GO) market size (value, capacity, production and consumption) in key regions like North America, Europe, Asia Pacific (China, Japan) and other regions. This study categorizes the global Graphene Oxide (GO) breakdown data by manufacturers, region, type and application, also analyzes the market status, market share, growth rate, future trends, market drivers, opportunities and challenges, risks and entry barriers, sales channels, distributors and Porter’s Five Forces Analysis.

Today’s graphene is normally produced using mechanical or thermal exfoliation, chemical vapour deposition (CVD), and epitaxial growth. One of the most effective way of synthesised graphene on a large scale could be by the chemical reduction of graphene oxide. Since the first report on mechanical exfoliation of monolayer graphene in 2004, interest in graphite oxide (which is produced by oxidation of graphite) has increased dramatically as people search for a cheaper, simpler, more efficient and better yielding method of producing graphene, that can be scaled up massively compared to current methods, and be financially suitable for industrial or commercial applications.

While graphite is a 3 dimensional carbon based material made up of millions of layers of graphene, graphite oxide is a little different. By the oxidation of graphite using strong oxidizing agents, oxygenated functionalities are introduced in the graphite structure which not only expand the layer separation, but also makes the material hydrophilic (meaning that they can be dispersed in water). This property enables the graphite oxide to be exfoliated in water using sonication, ultimately producing single or few layer graphene, known as graphene oxide (GO). The main difference between graphite oxide and graphene oxide is, thus, the number of layers. While graphite oxide is a multilayer system in a graphene oxide dispersion a few layers flakes and monolayer flakes can be found.

Graphene oxide has two types: powder and solution. Graphene oxide can be dispersed into a range of concentration solution. Therefore, in this report, the capacity and production of solution graphene oxide is converted into powders.

In 2017, the global Graphene Oxide (GO) market is led by USA. Europe is the second-largest region-wise market. The global Graphene Oxide (GO) market is valued at 6295 K USD in 2017 and is expected to reach 64504 K USD by the end of 2024, growing at a Growth Rate of 39.44% between 2017 and 2024. USA is the largest market of grapheme oxide, in terms of sales volume, according for about 51.8% in 2017.

Currently, Global Graphene Group, Graphenea, Garmor, ACS Material and The Sixth Element Materials are major manufacturers of this industry. Global Graphene Group is a global leader. In 2017, the production of Global Graphene Group was 54.2 M Kg, and the company held a share of 26.82%.

Graphene oxide is an emerging industry. The cosmically industrial production is still being studied, most manufacturers begun the first commercial production since 2013. Although the profit margin of graphene oxide is high, the research funds is also phenomenal, in additional to this, the downstream demand is unstable.

Currently, the Graphene Oxide (GO) industry looks more like a conceptual product, and the high prices limit the development of the Graphene Oxide (GO) industry. Few downstream consumers can accept such a high price even if GO has shown good performance.

Global Graphene Oxide (GO) market size will increase to 83 Million US$ by 2025, from 6 Million US$ in 2017, at a CAGR of 38.0% during the forecast period.

In this study, 2017 has been considered as the base year and 2018 to 2025 as the forecast period to estimate the market size for Graphene Oxide (GO). This report focuses on the top manufacturers’ Graphene Oxide (GO) capacity, production, value, price and market share of Graphene Oxide (GO) in global market. The following manufacturers are covered in this report:

  • Global Graphene Group
  • Graphenea
  • Garmor
  • ACS Material
  • Cheap Tubes
  • The Sixth Element Materials
  • BGT Materials
  • UNIPL
  • Allightec
  • E WAY Technology
  • LeaderNano
  • Nanoinnova

Graphene Oxide (GO) Breakdown Data by Type

  • Graphene Oxide Solution
  • Graphene Oxide Powder

Graphene Oxide (GO) Breakdown Data by Application

  • Transparent Conductive Films
  • Composites
  • Energy-Related Materials
  • Biology and Medicine
  • Others

Graphene Oxide (GO) Production Breakdown Data by Region

  • United States
  • Europe
  • China
  • Japan
  • Other Regions

The study objectives are:

  • To analyze and research the global Graphene Oxide (GO) capacity, production, value, consumption, status and forecast;
  • To focus on the key Graphene Oxide (GO) manufacturers and study the capacity, production, value, market share and development plans in next few years.
  • To focuses on the global key manufacturers, to define, describe and analyze the market competition landscape, SWOT analysis.
  • To define, describe and forecast the market by type, application and region.
  • To analyze the global and key regions market potential and advantage, opportunity and challenge, restraints and risks.
  • To identify significant trends and factors driving or inhibiting the market growth.
  • To analyze the opportunities in the market for stakeholders by identifying the high growth segments.
  • To strategically analyze each submarket with respect to individual growth trend and their contribution to the market.
  • To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.
  • To strategically profile the key players and comprehensively analyze their growth strategies.

In this study, the years considered to estimate the market size of Graphene Oxide (GO) :

  • History Year: 2013-2017
  • Base Year: 2017
  • Estimated Year: 2018
  • Forecast Year 2018 to 2025

For the data information by region, company, type and application, 2017 is considered as the base year. Whenever data information was unavailable for the base year, the prior year has been considered.

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