Electronic Materials and Chemicals Market Analysis Report, 2025–2035: Segment Forecasts by End-use (Semiconductors & Integrated Circuits, Printed Circuit Boards), Application (Silicon Wafers, Photoresists), Product Type (Solid, Liquid), and Region
Published Date: April - 2025 | Publisher: Market Insights Research | No of Pages: 240 | Industry: Chemical & Materials | Format: Report available in PDF / Excel Format
View Details Buy Now 2999 Download Sample Ask for Discount Request CustomizationElectronic Materials and Chemicals Market Analysis Report, 2025–2035Segment Forecasts by End-use (Semiconductors & Integrated Circuits, Printed Circuit Boards), Application (Silicon Wafers, Photoresists), Product Type (Solid, Liquid), and Region
Electronic Materials and Chemicals Market Size and Trends
The global electronic materials and chemicals market is projected to reach a valuation of approximately USD 79.3 billion in 2025 and is expected to expand to USD 144.6 billion by 2035, progressing at a compound annual growth rate (CAGR) of 6.2% during the forecast period.
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This growth is primarily fueled by surging demand for semiconductors, advancements in microelectronics, and the widespread adoption of next-generation consumer electronics across developed and emerging markets.
Electronic materials and specialty chemicals are the foundation of the semiconductor and electronics manufacturing industry. Their applications span from wafer fabrication to flat panel displays, LED technologies, printed circuit boards, and advanced packaging. As global digital transformation accelerates—driven by cloud computing, artificial intelligence, and the proliferation of smart devices—the importance of reliable, high-purity materials has grown exponentially.
The ongoing miniaturization of electronics has placed immense pressure on material scientists and manufacturers to develop high-performance materials that meet the demands of smaller, more powerful devices. This includes innovations in dielectric materials, photoresists, wet chemicals, CMP slurries, and etchants. Improved formulations and production techniques are enabling faster, denser, and more energy-efficient chips, making these materials indispensable.
Rising global standards of living, coupled with decreasing prices of electronics manufacturing equipment, are fostering increased production and consumption of consumer electronics. Countries across Asia Pacific—particularly China, Taiwan, South Korea, and India—are emerging as pivotal hubs in this ecosystem. A growing middle class, increasing urbanization, and government-backed infrastructure programs in these regions are fueling sustained growth in electronics manufacturing, directly influencing the market for electronic chemicals and materials.
Another key growth factor is the rapid expansion of the electric vehicle (EV) and renewable energy industries. EVs require complex electronic control systems, battery management circuits, and power electronics, all of which depend on high-purity materials and chemicals. In parallel, solar panels and energy storage systems are also spurring demand for specialized materials such as high-efficiency conductive pastes and encapsulants.
The rise in the use of advanced packaging technologies such as 3D ICs and fan-out wafer-level packaging (FOWLP) has further intensified the need for high-performance materials that offer thermal stability, electrical insulation, and precision patterning capabilities. This shift is driving new material formulations and integration methods across the electronics supply chain.
Despite the strong outlook, the industry faces several challenges. The manufacturing and disposal of electronic materials can introduce environmental and health risks due to the presence of heavy metals, halogenated compounds, and volatile organic substances. These concerns are increasingly being addressed by international regulatory bodies such as the U.S. Environmental Protection Agency (EPA), the German Federal Environment Agency, and the World Health Organization (WHO). Regulations targeting electronic waste (e-waste) management and chemical use are expected to tighten over the coming years, prompting a shift toward greener alternatives and closed-loop recycling models.
In summary, the electronic materials and chemicals market is poised for dynamic growth through 2035, driven by technological evolution, end-user demand, and expanding production capabilities. The industry's future will be shaped by its ability to innovate sustainably while meeting the rigorous demands of a hyper-connected digital world.
Report Coverage & Deliverables
Product Insights
Solid-state electronic materials continue to lead the global market, accounting for the highest revenue share of approximately 54.1% in 2025. This dominance is fueled by their critical role in manufacturing core consumer electronics such as smartphones, laptops, wearable devices, and computing systems. The continued miniaturization and performance enhancement of electronics heavily depend on the reliability and efficiency of solid materials including conductive polymers, silicon wafers, and dielectric compounds.
As global interest in renewable technologies like solar panels and electric vehicles surges, the demand for sophisticated solid materials—capable of withstanding thermal and electrical stress—is rapidly expanding. Manufacturers are increasingly channeling investments into research and development to engineer high-efficiency, environmentally sustainable materials. New advancements such as solid-state electrolytes and next-gen dielectric composites are reshaping product development strategies, improving durability, and optimizing energy usage across consumer and industrial electronic applications.
In contrast, gaseous materials are poised for the fastest growth, projected to record a CAGR of 6.9% from 2025 to 2035. Their growing utilization in semiconductor fabrication, PCB etching, and advanced thin-film technologies is a major growth catalyst. Specialty gases play a crucial role in precision processes like chemical vapor deposition (CVD), plasma-enhanced CVD, and atomic layer deposition—enabling manufacturers to create ultra-thin films and detailed nanostructures.
The rise of high-brightness LEDs, OLED displays, and solar photovoltaic modules is further reinforcing the demand for specialty process gases, including silane, ammonia, hydrogen chloride, and fluorinated compounds. As semiconductor geometries continue to shrink and fabrication complexity increases, gas-phase materials will become increasingly indispensable in achieving superior device uniformity and performance.
Application Insights
Silicon wafers remain the cornerstone of the electronics materials ecosystem, securing the largest revenue share of 43.5% in 2025. Their unmatched electrical and mechanical properties make them essential in the production of integrated circuits and memory devices. The surge in demand for high-speed, low-power chips used in data centers, edge computing, and mobile devices is directly influencing silicon wafer consumption. Additionally, their use in the production of high-frequency communication modules and automotive electronics has amplified with the advancement of 5G and autonomous driving systems.
On the other hand, the photoresist segment is expected to witness the highest growth rate with a projected CAGR of 7.2% during the forecast period. This surge is driven by increased demand for lithography solutions in microelectronics and semiconductor packaging. Photoresists are crucial in defining circuit patterns and enhancing imaging resolution during chip fabrication. The shift toward EUV (Extreme Ultraviolet) lithography in advanced chip nodes is boosting the need for more complex photoresist chemistries capable of supporting extreme precision and reduced overlay errors.
The continued scaling down of chip geometries, combined with rising demand for advanced CMOS image sensors and logic devices, is further propelling the application of photoresists and associated developer chemicals in fabrication processes.
End-use Insights
The semiconductor and integrated circuits sector remains the dominant consumer of electronic materials and chemicals, representing approximately 68.7% of the total market revenue in 2025. This is largely attributed to the increasing integration of semiconductors in emerging technologies such as artificial intelligence, cloud computing, 6G, smart wearables, and autonomous systems. These applications require advanced packaging, higher transistor densities, and improved thermal management—each of which demands specialized materials throughout the manufacturing process.
Furthermore, the automotive industry's transition toward electrification and autonomy has spurred new opportunities for electronic component development. Vehicle electrification depends on sophisticated chips for battery control, infotainment systems, and advanced driver-assistance systems (ADAS), creating fresh demand for ICs and related materials.
Printed circuit boards (PCBs) are anticipated to experience steady growth, with a projected CAGR of 5.8% between 2025 and 2035. PCBs serve as the foundational framework for all electronic devices, and their increasing complexity—especially in multilayer and HDI formats—is fostering a surge in high-performance material needs, including laminates, solder masks, and conductive adhesives.
As consumer electronics diversify and demand for smart appliances and IoT-enabled devices continues to rise, PCBs are becoming more sophisticated, driving consumption of high-reliability materials. Coupled with rising global disposable incomes and changing digital lifestyles, the consumer electronics boom is set to further accelerate demand in the PCB segment.
Report Scope
Parameter |
Details |
Report Title |
Electronic Materials and Chemicals Market Report (2025–2035) |
Forecast Period |
2025 to 2035 |
Base Year |
2024 |
Historical Data |
2019 to 2023 |
Estimated Market Size (2025) |
USD 79.3 Billion |
Forecast Market Size (2035) |
USD ~107 Billion (est.) |
CAGR (2025–2030) |
6.2% |
Geographic Scope |
North America, Europe, Asia Pacific, Latin America, Middle East & Africa |
Segments Covered |
Product Type, Application, End-use, Region |
Data Sources |
Industry Reports, Primary Interviews, SEC Filings, Government Publications |
Analysis Tools Used |
SWOT, PESTLE, Porter’s Five Forces, Value Chain Analysis |
Objective |
To forecast market trends and analyze growth opportunities and challenges |
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Regional Insights
The Asia Pacific region remains the undisputed leader in the global electronic materials and chemicals market, commanding the largest revenue share of 69.1% in 2025. This dominance is driven by rapid industrial growth, a deep-rooted electronics manufacturing ecosystem, and strategic governmental policies that support semiconductor development. Key nations such as China, South Korea, Japan, and Taiwan are home to some of the world’s leading chip foundries and electronics brands, creating a strong and sustained demand for high-purity materials and specialty chemicals.
China continues to expand its semiconductor self-sufficiency goals, backed by the “Made in China 2025” initiative, while Taiwan’s leadership in foundry services and advanced packaging fuels demand for process chemicals, CMP slurries, and photoresists. Japan remains a hub for precision chemicals and metrology equipment, while South Korea—led by conglomerates like Samsung and SK Hynix—is investing heavily in future nodes and next-gen memory chips.
North America Trends
North America holds a substantial share of the electronic materials and chemicals market, supported by a strong presence of high-tech manufacturers such as Intel, Micron Technology, Texas Instruments, and GlobalFoundries. These companies are major consumers of lithographic materials, deposition gases, and etchants essential to semiconductor device fabrication. The region’s leadership in advanced R&D and specialty gas manufacturing adds to its strategic position.
In the U.S., national efforts to strengthen semiconductor sovereignty are intensifying. The CHIPS and Science Act and related incentives are spurring new fabs, bolstering demand for high-performance materials used across wafer fabrication, assembly, and testing. The continued rollout of 5G infrastructure, electric vehicles, and cloud computing infrastructure is also enhancing the need for high-end electronic components, which in turn supports growth in materials and chemicals.
Latin America Trends
The Latin American electronic materials and chemicals market is projected to grow at a CAGR of 6.4% through 2035, driven by industrial diversification and digitalization across sectors. Countries like Mexico and Brazil are emerging as attractive hubs for electronics assembly and component sourcing due to cost advantages and geographic proximity to North America.
As global supply chains shift to reduce reliance on Asia, Latin America is gaining traction with foreign direct investment into local electronics manufacturing. Policy reforms, coupled with regional trade agreements and a growing consumer base for smart devices and connected systems, are positioning the region for solid growth. Natural resource availability, including key minerals, further strengthens the region’s potential in raw material processing for the electronics industry.
Europe Trends
Europe is experiencing steady growth in the electronic materials and chemicals space, underpinned by advancements in automotive electronics, medical devices, and green technologies. The continent’s transition toward electric mobility and the EU’s Digital Decade strategy are fostering demand for high-quality semiconductors and electronic assemblies, all of which require reliable chemical inputs.
Germany, the Netherlands, and France are leading innovation in microelectronics and photonics, supported by EU-wide initiatives such as the European Chips Act. Additionally, the production of handheld gadgets and industrial electronics across the region is pushing suppliers to innovate in material sustainability, recyclability, and performance enhancement.
Key Company Insights
Several global players dominate the electronic materials and chemicals market by focusing on innovation, strategic expansions, and vertical integration.
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Sumika Electronic Materials, a subsidiary of Sumitomo Chemical, is known for its diversified product portfolio that includes photoresists, high-purity wet chemicals, OLED optical films, polarizing films, and advanced battery materials. The company continues to invest in sustainable production practices and collaborates with major chipmakers to meet evolving material specifications.
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FUJIFILM Electronic Materials has emerged as a comprehensive solutions provider after acquiring the electronic chemicals business from Entegris. Its offerings now include advanced CMP slurries, lithographic materials, thin-film precursors, and cleaning solutions. The acquisition strengthens its position in end-to-end semiconductor material supply, particularly for advanced nodes.
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EMD Performance Materials Corp. (part of Merck Group) is heavily focused on high-k metal gate materials, dielectric solutions, and EUV-compatible photoresists. Their materials support the manufacture of logic and memory devices down to sub-5nm scale.
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Drex-Chem Technologies and EKC Technology focus on cleaning chemicals and etchants tailored for advanced wafer cleaning processes, catering to nodes below 10nm.
Recent Developments
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In August 2024, JSR Corporation announced the acquisition of Yamanaka Hutech Corporation (YHC), making it a wholly owned subsidiary. The move enhances JSR’s expertise in film-forming and surface-modifying technologies, aligning with its strategy to provide complete materials solutions for logic, memory, and photonics devices.
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In May 2024, Air Liquide launched a new diborane production facility at its advanced materials center in Sejong, South Korea. Designed with smart analytics and automation technologies, the facility reinforces Air Liquide’s role in supplying ultra-high-purity gases essential for next-gen transistor fabrication. This investment aligns with South Korea’s ambition to lead in 2nm and 3D-DRAM chip production.
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Key Players in the Electronic Materials and Chemicals Market
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Sumika Electronic Materials (Sumitomo Chemical)
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FUJIFILM Electronic Materials
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EMD Performance Materials (Merck Group)
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Linde plc
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Honeywell International Inc.
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Hitachi Chemical Co., Ltd.
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BASF SE
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Tokyo Ohka Kogyo Co., Ltd.
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JSR Corporation
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Avantor, Inc.
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Cabot Microelectronics Corporation
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Solvay S.A.
Electronic Materials and Chemicals Market Report Segmentation
By Product Type
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Solid
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Liquid
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Gaseous
By Application
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Silicon Wafers
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Photoresists
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Flat Panel Displays
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LED Packaging
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Printed Circuit Boards
By End-use
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Semiconductors & Integrated Circuits
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Printed Circuit Boards (PCBs)
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Consumer Electronics
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Renewable Energy Systems
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Automotive Electronics
By Region
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North America
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Europe
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Asia Pacific
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Latin America
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Middle East & Africa
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Table of Content
Table of Contents
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Executive Summary
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Research Methodology
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Market Overview
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Market Dynamics
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Drivers
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Restraints
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Opportunities
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Challenges
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Technological Trends and Innovations
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Market Segmentation
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By End-use
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By Application
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By Product Type
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By Region
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Regional Outlook
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Asia Pacific
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North America
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Europe
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Latin America
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Middle East & Africa
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Competitive Landscape
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Company Profiles
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Strategic Developments
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Analyst Perspective
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Appendix
Executive Summary
Research Methodology
Market Overview
Market Dynamics
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Drivers
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Restraints
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Opportunities
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Challenges
Technological Trends and Innovations
Market Segmentation
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By End-use
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By Application
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By Product Type
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By Region
Regional Outlook
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Asia Pacific
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North America
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Europe
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Latin America
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Middle East & Africa
Competitive Landscape
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Company Profiles
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Strategic Developments
Analyst Perspective
Appendix
List Tables Figures
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