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市場調查報告書
商品編碼
1979971
液晶顯示材料市場預測:至2034年-按材料類型、技術、應用和地區分類的全球分析LCD Display Materials Market Forecasts to 2034 - Global Analysis By Material Type, Technology, Application and By Geography |
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根據 Stratistics MRC 的研究,預計到 2026 年,全球液晶顯示材料市場規模將達到 100.4 億美元,在預測期內以 3.6% 的複合年成長率成長,到 2034 年將達到 133.3 億美元。
液晶顯示器 (LCD) 材料包括工程液晶混合物、偏光片、玻璃面板、彩色濾光片陣列、取向塗層和背光元件,這些材料共同構成了 LCD 的視覺輸出。液晶利用電訊號調節光線傳輸,偏光膜則能提高對比和清晰度。透明導電層(例如氧化銦錫)可實現精確的像素驅動。這些材料能夠提升電視、筆記型電腦、手機、行動電話顯示器和工業螢幕等設備的亮度、能源效率、色彩還原度和可靠性。持續的技術創新致力於研發更薄的基板、永續的配方、更快的反應速度和更優異的光學層,從而實現更清晰的影像、更低的功耗和更長的使用壽命。
根據 Omdia 發布的 2026 年調查報告,2025 年大型顯示器(包括 LCD 和 OLED)出貨量將達到 9.105 億台,較去年同期成長 2.9%。其中,LCD 出貨量就達到 8.768 億台,儘管面臨全球經濟不確定性和關稅壓力,仍較去年同期成長 2.6%。
家用電器需求增加
全球電子設備的普及是液晶顯示材料市場的主要驅動力。智慧型手機、電視、筆記型電腦、平板電腦和智慧穿戴裝置的強勁銷售,帶動了對液晶化合物、偏光片、特殊玻璃和透明電極等關鍵組件的需求成長。都市化加快、購買力提升以及數位化生活方式的普及,推動了設備的頻繁更換。超高清解析度和節能螢幕等技術創新進一步提高了對材料的需求。隨著各大品牌致力於打造更薄、更亮、更耐用的顯示螢幕,成熟市場和新興市場對先進液晶材料的消費量都在穩步成長。
與有機發光二極體(OLED)和新興顯示技術的激烈競爭。
OLED及下一代顯示解決方案日益受到青睞,正顯著影響著LCD顯示材料市場。 OLED技術具有高畫質、高對比、輕薄結構和設計靈活性等優勢,使其成為高階電子設備的理想選擇。隨著製造效率的提升和成本的降低,OLED的應用範圍正不斷擴展至智慧型手機、電視和智慧型裝置。此外,MicroLED和MiniLED技術的進步也加劇了市場競爭。這種轉變限制了傳統LCD材料的可擴展性,迫使供應商專注於成本最佳化和技術升級,以在瞬息萬變的全球顯示產業中保持競爭力。
智慧基礎設施數位電子看板的發展
對智慧城市系統和數位通訊平台的投資不斷增加,為液晶顯示(LCD)材料市場創造了新的機會。公共顯示器、交通資訊螢幕、廣告面板和自助服務終端都依賴於效能卓越的LCD技術。城市現代化計劃優先考慮動態內容共用和互動服務,從而拓展了顯示設備的應用範圍。這些應用環境需要高亮度、高耐久性和耐環境腐蝕性的材料。隨著城市和商業設施不斷部署智慧基礎設施解決方案,預計全球市場對先進LCD材料的需求將穩定成長。
快速過渡到下一代顯示技術
消費者對有機發光二極體二極體(OLED)和微型發光二極體(micro-LED)等先進顯示技術的日益偏好,對液晶顯示器(LCD)材料產業構成了嚴峻挑戰。這些新技術具有更高的影像品質、更薄的設計、柔軟性和更卓越的能效,因此對高階電子產品製造商極具吸引力。隨著製造流程的日趨成熟和價格競爭力的提升,市場滲透率也不斷提高。這種發展趨勢可能會逐步降低對傳統LCD面板及相關組件的依賴。如果缺乏持續的技術創新,LCD材料製造商將面臨全球顯示器產業需求萎縮和競爭加劇的風險。
新冠疫情對液晶顯示材料市場產生了正面和負面的雙重影響。初期限制措施導致工廠停工、原料供應中斷及運輸延誤,進而造成產能下降。然而,遠距辦公、線上學習和居家娛樂的興起帶動了筆記型電腦、電視和電腦顯示器銷售的成長。這種需求的激增帶動了液晶化合物和光學薄膜等關鍵液晶顯示組件的需求。儘管組件短缺和物流瓶頸等挑戰依然存在,但疫情凸顯了顯示技術的關鍵作用,並推動了其在全球各領域的復甦和持續發展。
在預測期內,液晶顯示器細分市場預計將佔據最大的市場佔有率。
由於液晶(LCD)在顯示運行中發揮核心作用,預計在預測期內,液晶材料仍將佔據最大的市場佔有率。液晶透過響應電訊號來控制光線傳輸,這是所有液晶面板影像生成的基礎。家用電子電器、汽車介面和專業顯示系統領域的強勁需求推動了液晶材料的持續應用。為了提高顯示清晰度、反應速度和能效,對先進液晶化合物的需求進一步提升了液晶材料的重要性。由於液晶材料對於面板功能至關重要,並且在製造過程中持續不可或缺,因此它在所有液晶材料中佔據最大的佔有率。
預計在預測期內,量子點液晶顯示器細分市場將呈現最高的複合年成長率。
在預測期內,量子點液晶顯示器(LCD)細分市場預計將呈現最高的成長率,這主要得益於其相比傳統LCD能夠呈現更鮮豔的色彩、更高的亮度和更優異的能效。量子點薄膜的應用提升了色彩還原度,同時維持了LCD製造的成本優勢。消費者對高階電視、高階遊戲顯示器和專業顯示器的需求不斷成長,推動了量子點LCD的普及。奈米技術的不斷進步和可擴展生產方法的不斷改進,使得這項技術更加易於應用。因此,量子點LCD解決方案在全球顯示器應用領域正蓬勃發展。
在整個預測期內,亞太地區預計將保持最大的市場佔有率,這主要得益於該地區面板製造工廠和電子產品製造地的集中。中國、韓國、日本和台灣等國家和地區在為各種消費和工業應用生產顯示組件方面發揮著至關重要的作用。完善的供應鏈網路、技術專長和持續的資本投資鞏固了該地區的主導地位。除了出口主導的生產外,強勁的國內消費也支撐著材料需求。製造效率的不斷提高和產業扶持政策的持續推進,確保了亞太地區繼續保持其作為全球液晶顯示材料主要市場的地位。
在預測期內,北美預計將呈現最高的複合年成長率,這主要得益於電子、汽車系統、醫療設備和商用顯示器等領域應用的不斷擴展。對高品質、高能源效率螢幕日益成長的需求,推動了增強型光學薄膜和量子點技術等尖端材料的應用。智慧城市基礎設施、數位通訊平台和電動車解決方案的持續部署,也促進了顯示器整合度的提升。持續的創新和大規模的研發投入,正在推動技術的快速普及。隨著消費者對高階高解析度顯示產品的偏好日益增強,北美正崛起為成長勢頭強勁的主導地區。
According to Stratistics MRC, the Global LCD Display Materials Market is accounted for $10.04 billion in 2026 and is expected to reach $13.33 billion by 2034 growing at a CAGR of 3.6% during the forecast period. LCD display materials include engineered liquid crystal mixtures, polarizing films, glass panels, color filter arrays, alignment coatings, and backlighting elements that collectively create visual output in liquid crystal displays. The liquid crystals adjust light passage under electrical signals, while polarizers refine contrast and clarity. Transparent conductive layers such as indium tin oxide enable accurate pixel activation. These materials enhance luminance, energy savings, color fidelity, and reliability in devices like TVs, laptops, mobile phones, vehicle displays, and industrial screens. Ongoing advancements emphasize slimmer substrates, sustainable formulations, faster response times, and improved optical layers to deliver sharper images, lower power usage, and longer operational life.
According to Omdia (2026), large-area display unit shipments (including LCD and OLED) reached 910.5 million units in 2025, growing 2.9% year-over-year. Within this, LCD shipments alone accounted for 876.8 million units, marking a 2.6% YoY increase despite global economic uncertainty and tariff pressures.
Rising demand for consumer electronics
Growing adoption of electronic devices worldwide significantly propels the LCD display materials market. Strong sales of smart phones, TVs, notebooks, tablets, and smart wearable's increase demand for essential components like liquid crystal compounds, polarizing films, specialty glass, and transparent electrodes. Factors such as urban growth, rising purchasing power, and digitally connected lifestyles encourage frequent device upgrades. Advancements including ultra-high-definition resolution and power-efficient screens further intensify material requirements. As brands strive to deliver thinner profiles, improved brightness, and enhanced durability, the consumption of sophisticated LCD materials expands steadily in both mature and developing markets.
Intense competition from OLED and emerging display technologies
Growing preference for OLED and next-generation display solutions significantly restrains the LCD display materials market. OLED technology delivers enhanced image quality, improved contrast, slimmer construction, and design flexibility, making it attractive for high-end electronics. As manufacturing efficiencies improve and prices decline, OLED adoption expands across smart phones, televisions, and smart devices. Moreover, advancements in MicroLED and MiniLED add further competitive pressure. This transition limits the expansion potential of traditional LCD materials and forces suppliers to focus on cost optimization and technical upgrades to sustain relevance within the rapidly changing global display industry.
Growth of smart infrastructure and digital signage
Rising investments in intelligent urban systems and digital communication platforms open new avenues for the LCD display materials market. Public display boards, transit information screens, advertising panels, and self-service kiosks depend on robust LCD technology. Urban modernization projects prioritize dynamic content sharing and interactive services, expanding the use of display installations. Such environments demand materials offering enhanced brightness, durability, and environmental resistance. As cities and commercial entities continue adopting smart infrastructure solutions, demand for advanced LCD materials is expected to increase consistently across global markets.
Rapid shift toward next-generation display technologies
The growing preference for advanced display formats like OLED and MicroLED represents a serious threat to the LCD display materials industry. These newer technologies provide enhanced image quality, slimmer designs, flexibility, and better power efficiency, appealing strongly to high-end electronics manufacturers. As fabrication processes mature and prices become more competitive, their market penetration increases. This evolution could gradually diminish dependence on traditional LCD panels and related components. Without continuous technological upgrades, LCD material producers risk experiencing shrinking demand and intensified competition within the global display sector.
The outbreak of COVID-19 influenced the LCD display materials market in both negative and positive ways. Early restrictions caused factory shutdowns, interruptions in raw material supply, and transportation delays, reducing production capacity. Nevertheless, the shift toward remote working, virtual learning, and in-home entertainment increased sales of notebooks, televisions, and computer monitors. This surge elevated demand for essential LCD components such as liquid crystal compounds and optical films. Despite ongoing issues like component shortages and logistical bottlenecks, the pandemic highlighted the critical role of display technologies, supporting recovery and sustained relevance across multiple sectors globally.
The liquid crystals segment is expected to be the largest during the forecast period
The liquid crystals segment is expected to account for the largest market share during the forecast period due to their central role in display operation. They regulate light transmission in response to electrical signals, forming the basis of image generation in all LCD panels. Strong demand across consumer electronics, automotive interfaces, and professional display systems drives sustained usage. Improvements in display clarity, response time, and power efficiency require refined liquid crystal compounds, reinforcing their importance. Because they are indispensable to panel functionality and continuously required in manufacturing, liquid crystals maintain the largest share within the overall LCD materials landscape.
The quantum dot LCD segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the quantum dot LCD segment is predicted to witness the highest growth rate, driven by its ability to deliver vibrant colors, higher luminance, and greater efficiency than traditional LCD formats. The use of quantum dot films enhances color reproduction while retaining the cost advantages of LCD manufacturing. Rising consumer preference for premium TVs, advanced gaming screens, and professional-grade monitors fuels adoption. Ongoing improvements in nanotechnology and scalable production methods are making this technology more accessible. Consequently, Quantum Dot LCD solutions are gaining strong momentum in worldwide display applications.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, supported by its concentration of panel fabrication facilities and electronics manufacturing centers. Nations including China, South Korea, Japan, and Taiwan play pivotal roles in producing display components for various consumer and industrial applications. Well-developed supply networks, technological expertise, and ongoing capital investments reinforce regional leadership. Strong internal consumption alongside export-driven production sustains material demand. With continuous advancements in manufacturing efficiency and supportive industrial policies, Asia-Pacific maintains its position as the primary market for LCD display materials worldwide.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR due to expanding applications in electronics, automotive systems, medical devices, and commercial displays. Demand for high-quality, energy-efficient screens encourage the use of advanced materials, including enhanced optical films and quantum dot technologies. Increasing deployment of smart city infrastructure, digital communication platforms, and electric mobility solutions contributes to rising display integration. Continuous innovation and substantial research investments promote rapid technological adoption. As preference for premium and high-resolution display products strengthens, North America emerges as the leading region in terms of growth momentum.
Key players in the market
Some of the key players in LCD Display Materials Market include Merck KGaA, JNC Corporation, DIC Corporation, Bayi Space, Hecheng Display, Slichem Display, Toray Industries, Nissan Chemical, Sanritz Corp., Shijiazhuang Chengzhi Yonghua Display Materials, Rolic Technologies, BASF, Sumitomo Chemical, Yantai Xianhua Chem, Jiangsu Hecheng, WISETOP New Material and Shijiazhuang Yuanji.
In November 2025, Merck KGaA has signed a 20-year power purchase agreement (PPA) with SK Innovation E&S to supply renewable electricity to its life science manufacturing sites in Daejeon and Songdo, South Korea. The agreement adds 16 megawatts (MW) of new renewable capacity and represents the company's longest energy commitment in the Asia-Pacific region.
In November 2025, Sumitomo Chemical is all set to expand its global footprint in the booming semiconductor market. The company has announced a definitive agreement to acquire 100% of Taiwan-based semiconductor process chemicals company Asia Union Electronic Chemical Corporation (AUECC). The deal, subject to standard regulatory approvals, will mark Sumitomo's first manufacturing base in Taiwan and its second in the United States, alongside its Texas facility.
In October 2025, BASF SE and ANDRITZ Group have signed a license agreement for the use of BASF's proprietary gas treatment technology, OASE(R) blue, in a carbon capture project planned to be implemented in the city of Aarhus, Denmark. The project aims to capture approximately 435,000 tons of CO2 annually from the flue gases of a waste-to-energy plant for sequestration; the city of Aarhus has set itself the goal of becoming CO2-neutral by 2030.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) Regions are also represented in the same manner as above.