Organic Semiconductor Market – Global Industry Analysis and Forecast (2023-2029) by Type, Application and Region

Organic Semiconductor Market is expected to reach US$ 238.4 Bn. by 2029 at a CAGR of 22.02% during the forecast period. The report study has analyzed revenue impact of COVID -19 pandemic on the sales revenue of market leaders, market followers and market disrupters in the report and same is reflected in our analysis.

Organic Semiconductor Market Definition

Organic semiconductors are organic or non metallic materials which exhibit semiconductor properties. Semiconducting properties in organic materials occurs for single molecules, long polymer chains and short chains of molecules depending on the material. These materials are primarily based on hydrogen and carbon which exhibits semiconducting properties.Organic Semiconductor MarketTo know about the Research Methodology :- Request Free Sample Report

Organic Semiconductor Market Dynamics

Growing market for semiconductor and consumer electronics industry are major driving factors behind the growth of market. Growing demand of organic semiconductor based photoconductors in xerography process as light valves in liquid crystal displays (LCDs), surge in the demand of organic materials to make a wide range of semiconducting electronic devices, such as light-emitting diodes, transistors, lasers and solar cells and demand of organic semiconductors in some applications as logic circuits with organic photovoltaic cells (OPVCs) or organic field-effect transistors (OFETs) are expected to improve the growth of market during forecast period. Organic semiconductor provides some benefits such as simple processing, better compatibility with a wide variety of substrates, solution process ability, lightweight and flexibility are ultimately propelling the growth of market. The enormous development in organic semiconductor industry has been driven by the emergence of new applications such as flexible light sources and displays and low-cost printed integrated circuits.However, complex design and low optimum temperature operation windows are major restraining factors that could hamper the growth of market.

Organic Semiconductor Market Segment Analysis

By type, polyethylene segment dominated the market in 2022 and is projected to witness steady growth at CAGR of xx% during forecast period. Polyethylene type of semiconductor is the most popular plastic in the world. Large scale adoption of high-density polyethylene sheet in semiconductor plastic is driving the growth of market. It is malleable and flexible, so it is used to make plastic accessories and parts to meet the industry's rigid demands for purity and quality. By application, organic photovoltaic cell and organic display segments dominated the market in 2022 and is expected to witness fast growth at CAGR of xx% during forecast period. The growing market for the solar panels across the globe is contributed in the growth of market. Organic photovoltaic cells are solar cells which uses small molecules and organic polymers as the active layer for charge transport and light absorption. An organic photovoltaic cells functions through the use of a semiconductor layer with a bandgap of suitable size. Furthermore, rising production and adoption of consumer electronics products such as TVs, laptops, computers, Smartphone’s and other devices with the implementation of organic light emitting diode technology based displays is driving the growth of market. Many electronics devices manufacturing companies are investing in the production of OLED display based products is further propelling the growth of market.

Organic Semiconductor Market Regional Analysis

Region wise, Asia pacific held the largest market share in 2022 and is expected to maintain its dominance at CAGR of xx% during forecast period. The developing economies such as China, Japan and India are major key contributors behind the growth of market. The growth is attributed to the growing market for consumer electronics and semiconductor industry across the region. Also massive presence of semiconductor manufacturing companies is driving the growth of market in the region. Every year, China imports some 200 billion U.S. dollars of semiconductors to power its consumer electronics, computing products and smart devices. In June 2019, China has launched a tech innovation board, called the STAR market, on the Shanghai Stock Exchange, to attract private capital and support start-ups and talented entrepreneurs in ventures that provision the development of advanced semiconductor chips, which is ultimately propelling the growth of market in the region. The objective of the report is to present a comprehensive analysis of the Global Organic Semiconductor Market including all the stakeholders of the industry. The past and current status of the industry with forecasted market size and trends are presented in the report with the analysis of complicated data in simple language. The report covers all the aspects of the industry with a dedicated study of key players that includes market leaders, followers and new entrants. PORTER, SVOR, PESTEL analysis with the potential impact of micro-economic factors of the market have been presented in the report. External as well as internal factors that are supposed to affect the business positively or negatively have been analyzed, which will give a clear futuristic view of the industry to the decision-makers. The report also helps in understanding Global Organic Semiconductor Market dynamics, structure by analyzing the market segments and projects the Global Organic Semiconductor Market. Clear representation of competitive analysis of key players by Application, price, financial position, Product portfolio, growth strategies, and regional presence in the Global Organic Semiconductor Market make the report investor’s guide.

Organic Semiconductor Market Scope: Inquiry Before Buying

Organic Semiconductor Market
Report Coverage Details
Base Year: 2022 Forecast Period: 2023-2029
Historical Data: 2017 to 2022 Market Size in 2022: US $ 59.19 Bn.
Forecast Period 2023 to 2029 CAGR: 22.02% Market Size in 2029: US $ 238.4 Bn.
Segments Covered: by Type • Polyethylene • Poly Aromatic Ring • Copolymer
by Application • System Component • Organic Photovoltaic (OPV) • OLED Lighting • Printed Batteries • Organic RFID Tags • Display Applications

Organic Semiconductor Market, by Region

North America (United States, Canada and Mexico) • Europe (UK, France, Germany, Italy, Spain, Sweden, Austria and Rest of Europe) • Asia Pacific (China, South Korea, Japan, India, Australia, Indonesia, Malaysia, Vietnam, Taiwan, Bangladesh, Pakistan and Rest of APAC) • Middle East and Africa (South Africa, GCC, Egypt, Nigeria and Rest of ME&A) • South America (Brazil, Argentina Rest of South America)

Organic Semiconductor Market Key Players are:

• Eastman Kodak Company • GE • Sony • Toyota • Samsung • LG • AU Optronics Corporation • BASF SE • Sigma-Aldrich • Bayer Material Science AG • Dupont • Koninklijke Philips N.V. • LG Display • Merck Kgaa • Novaled Gmbh • Samsung Display • Sony Corporation • Sumitomo Corporation • Universal Display Corporation (UDC) • Avisa Myko Inc • Raynergy Tek Incorporation • Ambicare Health Ltd • NovaTeq Solutions • NeuDrive Limited Frequently Asked Questions: 1. Which region has the largest share in Global Organic Semiconductor Market? Ans: Asia Pacific region held the highest share in 2022. 2. What is the growth rate of Global Organic Semiconductor Market? Ans: The Global Organic Semiconductor Market is growing at a CAGR of 22.02% during forecasting period 2023-2029. 3. What is scope of the Global Organic Semiconductor Market report? Ans: Global Organic Semiconductor Market report helps with the PESTEL, PORTER, COVID-19 Impact analysis, Recommendations for Investors & Leaders, and market estimation of the forecast period. 4. Who are the key players in Global Organic Semiconductor Market? Ans: The important key players in the Global Organic Semiconductor Market are – Eastman Kodak Company, GE, Sony, Toyota, Samsung, LG, AU Optronics Corporation, BASF SE, Sigma-Aldrich, Bayer Material Science AG, Dupont, Koninklijke Philips N.V., LG Display, Merck Kgaa, Novaled Gmbh, Samsung Display, Sony Corporation, Sumitomo Corporation, Avisa Myko Inc, Ambicare Health Ltd, NovaTeq Solutions, NeuDrive Limited. 5. What is the study period of this Market? Ans: The Global Organic Semiconductor Market is studied from 2022 to 2029.

Global Organic Semiconductor Market

1. Preface 1.1. Report Scope and Market Segmentation 1.2. Research Highlights 1.3. Research Objectives 2. Assumptions and Research Methodology 2.1. Report Assumptions 2.2. Abbreviations 2.3. Research Methodology 2.3.1. Secondary Research 2.3.1.1. Secondary data 2.3.1.2. Secondary Sources 2.3.2. Primary Research 2.3.2.1. Data from Primary Sources 2.3.2.2. Breakdown of Primary Sources 3. Executive Summary: Global Organic Semiconductor Market Size, by Market Value (US$ Bn) 4. Market Overview 4.1. Introduction 4.2. Market Indicator 4.2.1. Drivers 4.2.2. Restraints 4.2.3. Opportunities 4.2.4. Challenges 4.3. Porter’s Analysis 4.4. Value Chain Analysis 4.5. Market Risk Analysis 4.6. SWOT Analysis 4.7. Industry Trends and Emerging Technologies 5. Supply Side and Demand Side Indicators 6. Global Organic Semiconductor Market Analysis and Forecast 6.1. Organic Semiconductor Market Size & Y-o-Y Growth Analysis 6.1.1. North America 6.1.2. Europe 6.1.3. Asia Pacific 6.1.4. Middle East & Africa 6.1.5. South America 7. Global Organic Semiconductor Market Analysis and Forecast, By Type 7.1. Introduction and Definition 7.2. Key Findings 7.3. Organic Semiconductor Market Value Share Analysis, By Type 7.4. Organic Semiconductor Market Size (US$ Bn) Forecast, By Type 7.5. Organic Semiconductor Market Analysis, By Type 7.6. Organic Semiconductor Market Attractiveness Analysis, By Type 8. Global Organic Semiconductor Market Analysis and Forecast, By Application 8.1. Introduction and Definition 8.2. Key Findings 8.3. Organic Semiconductor Market Value Share Analysis, By Application 8.4. Organic Semiconductor Market Size (US$ Bn) Forecast, By Application 8.5. Organic Semiconductor Market Analysis, By Application 8.6. Organic Semiconductor Market Attractiveness Analysis, By Application 9. Global Organic Semiconductor Market Analysis, by Region 9.1. Organic Semiconductor Market Value Share Analysis, by Region 9.2. Organic Semiconductor Market Size (US$ Bn) Forecast, by Region 9.3. Organic Semiconductor Market Attractiveness Analysis, by Region 10. North America Organic Semiconductor Market Analysis 10.1. Key Findings 10.2. North America Organic Semiconductor Market Overview 10.3. North America Organic Semiconductor Market Value Share Analysis, By Type 10.4. North America Organic Semiconductor Market Forecast, By Type 10.4.1. Polyethylene 10.4.2. Poly Aromatic Ring 10.4.3. Copolymer 10.5. North America Organic Semiconductor Market Value Share Analysis, By Application 10.6. North America Organic Semiconductor Market Forecast, By Application 10.6.1. System Component 10.6.2. Organic Photovoltaic (OPV) 10.6.3. OLED Lighting 10.6.4. Printed Batteries 10.6.5. Organic RFID Tags 10.6.6. Display Applications 10.7. North America Organic Semiconductor Market Value Share Analysis, by Country 10.8. North America Organic Semiconductor Market Forecast, by Country 10.8.1. U.S. 10.8.2. Canada 10.9. North America Organic Semiconductor Market Analysis, by Country 10.10. U.S. Organic Semiconductor Market Forecast, By Type 10.10.1. Polyethylene 10.10.2. Poly Aromatic Ring 10.10.3. Copolymer 10.11. U.S. Organic Semiconductor Market Forecast, By Application 10.11.1. System Component 10.11.2. Organic Photovoltaic (OPV) 10.11.3. OLED Lighting 10.11.4. Printed Batteries 10.11.5. Organic RFID Tags 10.11.6. Display Applications 10.12. Canada Organic Semiconductor Market Forecast, By Type 10.12.1. Polyethylene 10.12.2. Poly Aromatic Ring 10.12.3. Copolymer 10.13. Canada Organic Semiconductor Market Forecast, By Application 10.13.1. System Component 10.13.2. Organic Photovoltaic (OPV) 10.13.3. OLED Lighting 10.13.4. Printed Batteries 10.13.5. Organic RFID Tags 10.13.6. Display Applications 10.14. North America Organic Semiconductor Market Attractiveness Analysis 10.14.1. By Type 10.14.2. By Application 10.15. PEST Analysis 10.16. Key Trends 10.17. Key Developments 11. Europe Organic Semiconductor Market Analysis 11.1. Key Findings 11.2. Europe Organic Semiconductor Market Overview 11.3. Europe Organic Semiconductor Market Value Share Analysis, By Type 11.4. Europe Organic Semiconductor Market Forecast, By Type 11.4.1. Polyethylene 11.4.2. Poly Aromatic Ring 11.4.3. Copolymer 11.5. Europe Organic Semiconductor Market Value Share Analysis, By Application 11.6. Europe Organic Semiconductor Market Forecast, By Application 11.6.1. System Component 11.6.2. Organic Photovoltaic (OPV) 11.6.3. OLED Lighting 11.6.4. Printed Batteries 11.6.5. Organic RFID Tags 11.6.6. Display Applications 11.7. Europe Organic Semiconductor Market Value Share Analysis, by Country 11.8. Europe Organic Semiconductor Market Forecast, by Country 11.8.1. Germany 11.8.2. U.K. 11.8.3. France 11.8.4. Italy 11.8.5. Spain 11.8.6. Rest of Europe 11.9. Europe Organic Semiconductor Market Analysis, by Country 11.10. Germany Organic Semiconductor Market Forecast, By Type 11.10.1. Polyethylene 11.10.2. Poly Aromatic Ring 11.10.3. Copolymer 11.11. Germany Organic Semiconductor Market Forecast, By Application 11.11.1. System Component 11.11.2. Organic Photovoltaic (OPV) 11.11.3. OLED Lighting 11.11.4. Printed Batteries 11.11.5. Organic RFID Tags 11.11.6. Display Applications 11.12. U.K. Organic Semiconductor Market Forecast, By Type 11.12.1. Polyethylene 11.12.2. Poly Aromatic Ring 11.12.3. Copolymer 11.13. U.K. Organic Semiconductor Market Forecast, By Application 11.13.1. System Component 11.13.2. Organic Photovoltaic (OPV) 11.13.3. OLED Lighting 11.13.4. Printed Batteries 11.13.5. Organic RFID Tags 11.13.6. Display Applications 11.14. France Organic Semiconductor Market Forecast, By Type 11.14.1. Polyethylene 11.14.2. Poly Aromatic Ring 11.14.3. Copolymer 11.15. France Organic Semiconductor Market Forecast, By Application 11.15.1. System Component 11.15.2. Organic Photovoltaic (OPV) 11.15.3. OLED Lighting 11.15.4. Printed Batteries 11.15.5. Organic RFID Tags 11.15.6. Display Applications 11.16. Italy Organic Semiconductor Market Forecast, By Type 11.16.1. Polyethylene 11.16.2. Poly Aromatic Ring 11.16.3. Copolymer 11.17. Italy Organic Semiconductor Market Forecast, By Application 11.17.1. System Component 11.17.2. Organic Photovoltaic (OPV) 11.17.3. OLED Lighting 11.17.4. Printed Batteries 11.17.5. Organic RFID Tags 11.17.6. Display Applications 11.18. Spain Organic Semiconductor Market Forecast, By Type 11.18.1. Polyethylene 11.18.2. Poly Aromatic Ring 11.18.3. Copolymer 11.19. Spain Organic Semiconductor Market Forecast, By Application 11.19.1. System Component 11.19.2. Organic Photovoltaic (OPV) 11.19.3. OLED Lighting 11.19.4. Printed Batteries 11.19.5. Organic RFID Tags 11.19.6. Display Applications 11.20. Rest of Europe Organic Semiconductor Market Forecast, By Type 11.20.1. Polyethylene 11.20.2. Poly Aromatic Ring 11.20.3. Copolymer 11.21. Rest of Europe Organic Semiconductor Market Forecast, By Application 11.21.1. System Component 11.21.2. Organic Photovoltaic (OPV) 11.21.3. OLED Lighting 11.21.4. Printed Batteries 11.21.5. Organic RFID Tags 11.21.6. Display Applications 11.22. Europe Organic Semiconductor Market Attractiveness Analysis 11.22.1. By Type 11.22.2. By Application 11.23. PEST Analysis 11.24. Key Trends 11.25. Key Developments 12. Asia Pacific Organic Semiconductor Market Analysis 12.1. Key Findings 12.2. Asia Pacific Organic Semiconductor Market Overview 12.3. Asia Pacific Organic Semiconductor Market Value Share Analysis, By Type 12.4. Asia Pacific Organic Semiconductor Market Forecast, By Type 12.4.1. Polyethylene 12.4.2. Poly Aromatic Ring 12.4.3. Copolymer 12.5. Asia Pacific Organic Semiconductor Market Value Share Analysis, By Application 12.6. Asia Pacific Organic Semiconductor Market Forecast, By Application 12.6.1. System Component 12.6.2. Organic Photovoltaic (OPV) 12.6.3. OLED Lighting 12.6.4. Printed Batteries 12.6.5. Organic RFID Tags 12.6.6. Display Applications 12.7. Asia Pacific Organic Semiconductor Market Value Share Analysis, by Country 12.8. Asia Pacific Organic Semiconductor Market Forecast, by Country 12.8.1. China 12.8.2. India 12.8.3. Japan 12.8.4. ASEAN 12.8.5. Rest of Asia Pacific 12.9. Asia Pacific Organic Semiconductor Market Analysis, by Country 12.10. China Organic Semiconductor Market Forecast, By Type 12.10.1. Polyethylene 12.10.2. Poly Aromatic Ring 12.10.3. Copolymer 12.11. China Organic Semiconductor Market Forecast, By Application 12.11.1. System Component 12.11.2. Organic Photovoltaic (OPV) 12.11.3. OLED Lighting 12.11.4. Printed Batteries 12.11.5. Organic RFID Tags 12.11.6. Display Applications 12.12. India Organic Semiconductor Market Forecast, By Type 12.12.1. Polyethylene 12.12.2. Poly Aromatic Ring 12.12.3. Copolymer 12.13. India Organic Semiconductor Market Forecast, By Application 12.13.1. System Component 12.13.2. Organic Photovoltaic (OPV) 12.13.3. OLED Lighting 12.13.4. Printed Batteries 12.13.5. Organic RFID Tags 12.13.6. Display Applications 12.14. Japan Organic Semiconductor Market Forecast, By Type 12.14.1. Polyethylene 12.14.2. Poly Aromatic Ring 12.14.3. Copolymer 12.15. Japan Organic Semiconductor Market Forecast, By Application 12.15.1. System Component 12.15.2. Organic Photovoltaic (OPV) 12.15.3. OLED Lighting 12.15.4. Printed Batteries 12.15.5. Organic RFID Tags 12.15.6. Display Applications 12.16. ASEAN Organic Semiconductor Market Forecast, By Type 12.16.1. Polyethylene 12.16.2. Poly Aromatic Ring 12.16.3. Copolymer 12.17. ASEAN Organic Semiconductor Market Forecast, By Application 12.17.1. System Component 12.17.2. Organic Photovoltaic (OPV) 12.17.3. OLED Lighting 12.17.4. Printed Batteries 12.17.5. Organic RFID Tags 12.17.6. Display Applications 12.18. Rest of Asia Pacific Organic Semiconductor Market Forecast, By Type 12.18.1. Polyethylene 12.18.2. Poly Aromatic Ring 12.18.3. Copolymer 12.19. Rest of Asia Pacific Organic Semiconductor Market Forecast, By Application 12.19.1. System Component 12.19.2. Organic Photovoltaic (OPV) 12.19.3. OLED Lighting 12.19.4. Printed Batteries 12.19.5. Organic RFID Tags 12.19.6. Display Applications 12.20. Asia Pacific Organic Semiconductor Market Attractiveness Analysis 12.20.1. By Type 12.20.2. By Application 12.21. PEST Analysis 12.22. Key Trends 12.23. Key Developments 13. Middle East & Africa Organic Semiconductor Market Analysis 13.1. Key Findings 13.2. Middle East & Africa Organic Semiconductor Market Overview 13.3. Middle East & Africa Organic Semiconductor Market Value Share Analysis, By Type 13.4. Middle East & Africa Organic Semiconductor Market Forecast, By Type 13.4.1. Polyethylene 13.4.2. Poly Aromatic Ring 13.4.3. Copolymer 13.5. Middle East & Africa Organic Semiconductor Market Value Share Analysis, By Application 13.6. Middle East & Africa Organic Semiconductor Market Forecast, By Application 13.6.1. System Component 13.6.2. Organic Photovoltaic (OPV) 13.6.3. OLED Lighting 13.6.4. Printed Batteries 13.6.5. Organic RFID Tags 13.6.6. Display Applications 13.7. Middle East & Africa Organic Semiconductor Market Value Share Analysis, by Country 13.8. Middle East & Africa Organic Semiconductor Market Forecast, by Country 13.8.1. GCC 13.8.2. South Africa 13.8.3. Rest of Middle East & Africa 13.9. Middle East & Africa Organic Semiconductor Market Analysis, by Country 13.10. GCC Organic Semiconductor Market Forecast, By Type 13.10.1. Polyethylene 13.10.2. Poly Aromatic Ring 13.10.3. Copolymer 13.11. GCC Organic Semiconductor Market Forecast, By Application 13.11.1. System Component 13.11.2. Organic Photovoltaic (OPV) 13.11.3. OLED Lighting 13.11.4. Printed Batteries 13.11.5. Organic RFID Tags 13.11.6. Display Applications 13.12. South Africa Organic Semiconductor Market Forecast, By Type 13.12.1. Polyethylene 13.12.2. Poly Aromatic Ring 13.12.3. Copolymer 13.13. South Africa Organic Semiconductor Market Forecast, By Application 13.13.1. System Component 13.13.2. Organic Photovoltaic (OPV) 13.13.3. OLED Lighting 13.13.4. Printed Batteries 13.13.5. Organic RFID Tags 13.13.6. Display Applications 13.14. Rest of Middle East & Africa Organic Semiconductor Market Forecast, By Type 13.14.1. Polyethylene 13.14.2. Poly Aromatic Ring 13.14.3. Copolymer 13.15. Rest of Middle East & Africa Organic Semiconductor Market Forecast, By Application 13.15.1. System Component 13.15.2. Organic Photovoltaic (OPV) 13.15.3. OLED Lighting 13.15.4. Printed Batteries 13.15.5. Organic RFID Tags 13.15.6. Display Applications 13.16. Middle East & Africa Organic Semiconductor Market Attractiveness Analysis 13.16.1. By Type 13.16.2. By Application 13.17. PEST Analysis 13.18. Key Trends 13.19. Key Developments 14. South America Organic Semiconductor Market Analysis 14.1. Key Findings 14.2. South America Organic Semiconductor Market Overview 14.3. South America Organic Semiconductor Market Value Share Analysis, By Type 14.4. South America Organic Semiconductor Market Forecast, By Type 14.4.1. Polyethylene 14.4.2. Poly Aromatic Ring 14.4.3. Copolymer 14.5. South America Organic Semiconductor Market Value Share Analysis, By Application 14.6. South America Organic Semiconductor Market Forecast, By Application 14.6.1. System Component 14.6.2. Organic Photovoltaic (OPV) 14.6.3. OLED Lighting 14.6.4. Printed Batteries 14.6.5. Organic RFID Tags 14.6.6. Display Applications 14.7. South America Organic Semiconductor Market Value Share Analysis, by Country 14.8. South America Organic Semiconductor Market Forecast, by Country 14.8.1. Brazil 14.8.2. Mexico 14.8.3. Rest of South America 14.9. South America Organic Semiconductor Market Analysis, by Country 14.10. Brazil Organic Semiconductor Market Forecast, By Type 14.10.1. Polyethylene 14.10.2. Poly Aromatic Ring 14.10.3. Copolymer 14.11. Brazil Organic Semiconductor Market Forecast, By Application 14.11.1. System Component 14.11.2. Organic Photovoltaic (OPV) 14.11.3. OLED Lighting 14.11.4. Printed Batteries 14.11.5. Organic RFID Tags 14.11.6. Display Applications 14.12. Mexico Organic Semiconductor Market Forecast, By Type 14.12.1. Polyethylene 14.12.2. Poly Aromatic Ring 14.12.3. Copolymer 14.13. Mexico Organic Semiconductor Market Forecast, By Application 14.13.1. System Component 14.13.2. Organic Photovoltaic (OPV) 14.13.3. OLED Lighting 14.13.4. Printed Batteries 14.13.5. Organic RFID Tags 14.13.6. Display Applications 14.14. Rest of South America Organic Semiconductor Market Forecast, By Type 14.14.1. Polyethylene 14.14.2. Poly Aromatic Ring 14.14.3. Copolymer 14.15. Rest of South America Organic Semiconductor Market Forecast, By Application 14.15.1. System Component 14.15.2. Organic Photovoltaic (OPV) 14.15.3. OLED Lighting 14.15.4. Printed Batteries 14.15.5. Organic RFID Tags 14.15.6. Display Applications 14.16. South America Organic Semiconductor Market Attractiveness Analysis 14.16.1. By Type 14.16.2. By Application 14.17. PEST Analysis 14.18. Key Trends 14.19. Key Developments 15. Company Profiles 15.1. Market Share Analysis, by Company 15.2. Competition Matrix 15.2.1. Competitive Benchmarking of key players by price, presence, market share, Vehicles and R&D investment 15.2.2. New Product Launches and Product Enhancements 15.2.3. Market Consolidation 15.2.3.1. M&A by Regions, Investment and Vehicles 15.2.3.2. M&A Key Players, Forward Integration and Backward 15.2.3.3. Integration 15.3. Company Profiles: Key Players 15.3.1. Eastman Kodak Company 15.3.1.1. Company Overview 15.3.1.2. Financial Overview 15.3.1.3. Product Portfolio 15.3.1.4. Business Strategy 15.3.1.5. Recent Developments 15.3.1.6. Development Footprint 15.3.2. GE 15.3.3. Sony 15.3.4. Toyota 15.3.5. Samsung 15.3.6. LG 15.3.7. AU Optronics Corporation 15.3.8. BASF SE 15.3.9. Sigma-Aldrich 15.3.10. Bayer Material Science AG 15.3.11. Dupont 15.3.12. Koninklijke Philips N.V. 15.3.13. LG Display 15.3.14. Merck Kgaa 15.3.15. Novaled Gmbh 15.3.16. Samsung Display 15.3.17. Sony Corporation 15.3.18. Sumitomo Corporation 15.3.19. Universal Display Corporation (UDC) 15.3.20. Avisa Myko Inc 15.3.21. Raynergy Tek Incorporation 15.3.22. Ambicare Health Ltd 15.3.23. NovaTeq Solutions 15.3.24. NeuDrive Limited 16. Primary Key Insights
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