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Asia-Pacific Advanced Energy Materials Market

  • Report Code: AD 1001
  • Publish Date: Upcoming
  
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Advanced Energy Materials (AEM), include photovoltaic energy materials or photovoltaic wafers. These are a class of materials capable of converting solar energy to usable electric current. The Asia-Pacific Advanced Energy Materials Market was valued at $7,518.02 million in 2012, and is projected to reach $10,513.86 million by 2018, at a CAGR of 6.2%, for the given period. The Asia-Pacific Advanced Energy Materials market has grown considerably during the past few years and is expected to grow at a more rapid pace in the next five years; there are two different types of photovoltaic materials, which are crystalline silicon solar cell material and thin film solar cell material. Crystalline silicon solar cell is a major type of photovoltaic material, and has a huge demand in Asia-pacific.

 

These materials are in form of wafers that are integrated to form the photovoltaic modules. These modules are further integrated to form photovoltaic panels. Crystalline silicon solar cell material is the more commonly used advanced energy material.  Solar wafers can be broadly classified in two categories. These are thin film and crystalline solar wafers. Crystalline solar cell is made from polysilicon. There are three types of crystalline solar wafers. These are mono-crystalline, multi or poly-crystalline and amorphous. Thin film solar wafer is made by depositing one or more thin layers of photovoltaic material on a substrate.

 

The continuous rise in production of end products for use within the region and for exports derives a huge demand for the chemicals. The growing demand and policies including emission control and environment friendly products have led to innovation and developments in the industry, making it a strong chemical hub globally. The exorbitant growth and innovation along with the industry consolidations are expected to ascertain a bright future for the industry in the region. China is the major consumer of Advanced Energy Materials in Asia-Pacific, accounting for 75.5% of the total consumption. Subsequent to China are Japan and South Korea.

 

The key countries covered in Asia-Pacific Advanced Energy Materials Market are China, Japan, South Korea and others. The types of AEM studied include crystalline silicon solar cell material and thin film solar cell material. Further, as a part of qualitative analysis, the Asia-Pacific Advanced Energy Materials Market research report provides a comprehensive review of the important drivers, restraints, opportunities, and issues in the advanced energy materials market.

 

The Asia-Pacific Advanced Energy Materials Market report also provides an extensive competitive landscape of the companies operating in this market. It also includes the company profiles and competitive strategies adopted by various market players, such as 3A Composites Holding AG (Switzerland), 3M Company (U.S.), Air Products and Chemicals Inc. (U.S.), and Ametek Inc. (U.S.).

 

Customization Options:

 

Along with the market data, you can also customize MMM assessments that meet your company’s specific needs. Customize to get comprehensive industry standards and deep dive analysis of the following parameters:

 

Market size and forecast (Deep Analysis and Scope)

  • Consumption pattern (in-depth trend analysis), by application (country-wise)
  • Country wise market trends in terms of both value and volume
  • Competitive landscape with a detailed comparison of portfolio of each company mapped at the regional- and country-level
  • Production Data with a wealth of information on Advanced Energy Materials Raw material suppliers as well as producers at country level with much comprehended approach of understanding
  • Comprehensive data showing Advanced Energy Materials plant capacities, production, consumption, trade statistics, price analysis
  • Analysis of Forward chain integration as well as backward chain integration to understand the approach of business prevailing in the Asia-Pacific Advanced Energy Materials  market
  • Detailed analysis of Competitive Strategies like new product launch, expansions, merger & acquisitions that are adopted by various companies and their impact on Asia-Pacific Advanced Energy Materials Market
  • Detailed Analysis of various drivers and restraints with their impact on the Asia-Pacific Advanced Energy Materials Market
  • Detailed Analysis of various drivers and restraints with their impact on the Asia-Pacific Advanced Energy Materials market
  • Upcoming opportunities in advanced energy materials market
  • SWOT for top companies in advanced energy materials market
  • Porters 5 force analysis for advanced energy materials market
  • PESTLE analysis for major countries in advanced energy materials market


1 Introduction
1.1 Objective of the study
1.2 Market Definitions
1.3 Market Segmentation & Aspects Covered
1.4 Research Methodology
1.4.1 Assumptions (Market Size, Forecast, etc)
 

2 Executive Summary
 

3 Market Overview
 

4 Advanced Energy Materials-Asia-Pacific, By Applications
4.1 Split By Geography
4.1 Advanced Energy Materials-China by Applications
4.1 Advanced Energy Materials-Japan by Applications
4.1 Advanced Energy Materials-South Korea by Applications
4.2 Advanced Energy Materials-Asia-Pacific-Photovoltaic
4.2.1 Advanced Energy Materials-Asia-Pacific-Photovoltaic, By Geographies
4.2.1.1 Advanced Energy Materials-China-Photovoltaic
4.2.1.2 Advanced Energy Materials-Japan-Photovoltaic
4.2.1.3 Advanced Energy Materials-South Korea-Photovoltaic
 

5 Advanced Energy Materials-Asia-Pacific, By Types
5.1 Split By Geography
5.2 Advanced Energy Materials-China by Types
5.1 Advanced Energy Materials-Japan by Types
5.1 Advanced Energy Materials-South Korea by Types
5.2 Advanced Energy Materials-Asia-Pacific-Crystalline
5.2.1 Advanced Energy Materials-Asia-Pacific-Crystalline, By Geographies
5.2.1.1 Advanced Energy Materials-China-Crystalline
5.2.1.2 Advanced Energy Materials-Japan-Crystalline
5.2.1.3 Advanced Energy Materials-South Korea-Crystalline
5.3 Advanced Energy Materials-Asia-Pacific-Thin-Film
5.3.1 Advanced Energy Materials-Asia-Pacific-Thin-Film, By Geographies
5.3.1.1 Advanced Energy Materials-China-Thin-Film
5.3.1.2 Advanced Energy Materials-Japan-Thin-Film
5.3.1.3 Advanced Energy Materials-South Korea-Thin-Film
 

6 Advanced Energy Materials-Asia-Pacific, By Geographies
6.1 Advanced Energy Materials-China
6.1.1 Advanced Energy Materials-China, By Applications
6.1.1.1 Advanced Energy Materials-China-Photovoltaic
6.1.2 Advanced Energy Materials-China, By Types
6.1.2.1 Advanced Energy Materials-China-Crystalline
6.1.2.2 Advanced Energy Materials-China-Thin-Film
6.2 Advanced Energy Materials-Japan
6.2.1 Advanced Energy Materials-Japan, By Applications
6.2.1.1 Advanced Energy Materials-Japan-Photovoltaic
6.2.2 Advanced Energy Materials-Japan, By Types
6.2.2.1 Advanced Energy Materials-Japan-Crystalline
6.2.2.2 Advanced Energy Materials-Japan-Thin-Film
6.3 Advanced Energy Materials-South Korea
6.3.1 Advanced Energy Materials-South Korea, By Applications
6.3.1.1 Advanced Energy Materials-South Korea-Photovoltaic
6.3.2 Advanced Energy Materials-South Korea, By Types
6.3.2.1 Advanced Energy Materials-South Korea-Crystalline
6.3.2.2 Advanced Energy Materials-South Korea-Thin-Film
 

7 Advanced Energy Materials-Asia-Pacific, By Companies
7.1 Split By Geography
7.3 Advanced Energy Materials-China by Companies
7.1 Advanced Energy Materials-Japan by Companies
7.1 Advanced Energy Materials-South Korea by Companies
7.2 Advanced Energy Materials-Asia-Pacific-Renesola
7.3 Advanced Energy Materials-Asia-Pacific-LDK Solar
7.4 Advanced Energy Materials-Asia-Pacific-Wacker Chemie Ag
7.5 Advanced Energy Materials-Asia-Pacific-Applied Materials, Inc.
7.6 Advanced Energy Materials-Asia-Pacific-MEMC Electronic Materials Inc

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