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市场调查报告书
商品编码
1603878
2030 年色活性材料市场预测:按产品、功能、应用和地区分類的全球分析Chromoactive Material Market Forecasts to 2030 - Global Analysis By Product (Thermochromic, Photochromic, Electrochromic, Halochromic, Solvatochromic, Hydrochromic and Other Products), Function, Application and By Geography |
根据Stratistics MRC预测,2024年全球色活性材料市场规模将达123亿美元,预计2030年将达到195亿美元,预测期内复合年增长率为8.0%。
智慧材料,称为显色材料,会响应外部刺激(例如电脉衝、光、压力或温度)而改变颜色。穿戴式科技、医疗设备、防伪以及建筑和纺织品美学只是这些技术可以应用的领域的几个例子。这些包括感温变色、光致变色、水致变色和电致变色。
据印度品牌股权基金会称,2024 年 5 月有机和无机化学品出口达 47 亿美元。根据同一份文件,到 2040 年,印度石化和化学产品的销售额预计将成长两倍,达到 1 兆美元。
对智慧和节能解决方案的需求不断增长
智慧窗户使用色敏材料来调节热量和光的传输,提高能源效率并降低加热和冷却成本。这些窗户有可能减少高达 20% 的能源消耗,对住宅和商业应用都具有吸引力。此外,显色活性材料符合世界日益增长的永续性意识,永续技术领域的投资正在推动市场成长。
与现有系统的复杂集成
由于其复杂的集成,显色材料需要专门的製造流程、设备和专业知识,而且价格昂贵。这可能会导致製造商不愿意采用这些材料,从而减缓市场成长。此外,显色材料需要进行大量的重新设计,这会增加开发和安装时间并降低效率。
装饰性和适应性消费品的流行
客户对客製化产品的渴望导致对成色材料的需求增加。这些材料可以生产根据使用者偏好和环境因素改变颜色和外观的产品,从而提高电子、时尚和家居装饰的吸引力。此外,时尚产业在服装和配件中使用彩色材料来创造根据心情或场合而变化的动态设计。
製造和材料成本高
显色材料的製造成本昂贵,因此与替代材料相比竞争力较差。这可能会拒绝潜在客户,特别是在建筑、汽车和纺织等价格敏感行业。高生产成本也为新的竞争对手製造了障碍,抑制了创新和竞争。为显色技术突破做出贡献的公司越来越少,这可能会阻碍市场成长。
COVID-19 的影响
COVID-19 的爆发严重影响了髮色团市场,导致製造和供应链中断。许多公司面临劳动力短缺和停产等营运挑战,导致产量减少和产品上市延迟。在停工期间,对非必需品的需求下降,阻碍了市场成长。然而,随着企业适应新的现实并投资于智慧技术的先进材料,市场正在復苏。
感温变色部分预计将在预测期内成为最大的部分
预计感温变色细分市场将在整个预测期内占据最大的市场占有率。这是因为感温变色材料的多功能性使它们能够整合到许多应用中。纺织品使创新的时尚产品能够响应体温和环境的变化。包装透过指示可能影响食品品质的温度变化来提高产品安全性。它在汽车零件中用于美观和功能性目的进一步提高了其在市场上的影响力。
光调变领域预计在预测期内复合年增长率最高
光调变领域预计在预测期内将显着增长。因为光调变增强了采用成色材料的产品的美感。例如,在汽车应用中,製造商正在利用这些材料来製造其外部颜色根据环境光线条件而变化的车辆。这种个人化趋势正在推动消费者对创新色活性解决方案的兴趣和需求。
预计亚太地区在预测期内将占据最大的市场占有率。这是由于亚太地区快速都市化和基础设施发展对智慧建筑和节能技术的需求不断增长。显色材料也被用于汽车行业,该行业的生产活跃在韩国、中国和日本,以提高安全性、易用性和美观性,从而推动该地区的市场成长。
由于大力推动建筑节能解决方案,预计北美在预测期内的复合年增长率最高。显色材料,特别是智慧窗户中使用的电致变色和感温变色类型,有助于控制热量和光的传输并降低能源成本。这一趋势得到了减少能源消耗和碳排放的努力的支持,使得显色材料对于永续建筑设计有价值。
According to Stratistics MRC, the Global Chromoactive Material Market is accounted for $12.3 billion in 2024 and is expected to reach $19.5 billion by 2030 growing at a CAGR of 8.0% during the forecast period. Smart materials known as chromoactive materials alter color in reaction to external stimuli such as electrical impulses, light, pressure, or temperature. Wearable technology, medical gadgets, anti-counterfeiting measures, and aesthetics in architecture and textiles are just a few of the sectors that employ them. Thermochromic, photochromic, hydrochromic, and electrochromic are among the types.
According to the India Brand Equity Foundation, the exports of organic and inorganic chemicals reached USD 4.7 billion in May 2024. The same source also estimates that petrochemical and chemical sales in India are anticipated to triple and reach USD 1 trillion by 2040.
Increasing demand for smart and energy-efficient solutions
Smart windows employ chromoactive materials to regulate heat and light transmission, improving energy efficiency and lowering heating and cooling expenses. These windows are appealing for both residential and commercial applications since they may cut energy use by up to 20%. In addition, chromoactive materials are in line with the growing worldwide awareness of sustainability, which is drawing investments from sustainable technology sectors boosting the market growth.
Complexity in integration with existing systems
Chromoactive materials, due to their complex integration, can be expensive due to specialized manufacturing processes, equipment, and expertise. This can deter manufacturers from adopting these materials, slowing market growth. Furthermore, chromoactive materials require extensive re-engineering, leading to longer development and installation times, reducing efficiency and making them less appealing to industries with tight production schedules hampering the markets growth.
Rising popularity of decorative and adaptive consumer products
Customers' desire for customized items has led to an increase in demand for chromoactive materials. These materials improve the attractiveness of electronics, fashion, and home decor by allowing producers to produce products that alter color or appearance in response to user preferences or environmental factors. As well, the fashion industry is using chromoactive materials in apparel and accessories to create dynamic designs that change according on the mood or occasion thus encourages producers to spend money on cutting-edge color-changing textiles.
High manufacturing and material costs
Chromoactive materials are less competitive than alternative materials due to their higher production costs. This may turn off potential clients, particularly in price-conscious sectors like construction, automotive, and textiles. High production costs also discourage innovation and competition by erecting obstacles for new competitors. As fewer companies contribute to chromoactive technological breakthroughs, this might hinder market growth.
Covid-19 Impact
The COVID-19 pandemic significantly impacted the chromoactive materials market, causing disruptions in manufacturing and supply chains. Many companies faced operational challenges, including labor shortages and halted production, leading to reduced output and delays in product launches. The market's growth was hindered as demand for non-essential goods declined during lockdowns. However, as businesses adapt to new realities and invest in advanced materials for smart technologies, the market is poised for recovery.
The thermochromic segment is expected to be the largest during the forecast period
The thermochromic segment is predicted to secure the largest market share throughout the forecast period, owing to the versatility of thermochromic materials leads to their integration into numerous applications. In textiles, they enable innovative fashion items that react to body heat or environmental changes. In packaging, they enhance product safety by indicating temperature changes that could affect food quality. Their use in automotive components for aesthetic and functional purposes further expands their market presence
The light modulation segment is expected to have the highest CAGR during the forecast period
The light modulation segment is projected to witness substantial growth during the projection period, because light modulation enhances the aesthetic appeal of products incorporating chromoactive materials. In automotive applications, for instance, manufacturers are leveraging these materials to create vehicles with color-changing exteriors that respond to environmental light conditions. This personalization trend enhances consumer engagement and drives demand for innovative chromoactive solutions.
During the projected timeframe, the Asia Pacific region is expected to hold the largest market share because smart buildings and energy-efficient technologies are becoming more and more in demand as a result of the Asia Pacific region's rapid urbanization and infrastructural development. Chromoactive materials are also being used in the automobile sector, which has significant producers in South Korea, China, and Japan, for improved safety, usability, and aesthetic appeal driving the market growth in this region.
North America is projected to witness the highest CAGR over the forecast period, owing to significant push toward energy-efficient solutions in building and construction. Chromoactive materials, especially electrochromic and thermochromic types used in smart windows, help control heat and light transmission, reducing energy costs. This trend is supported by initiatives to lower energy consumption and reduce carbon footprints, making chromoactive materials valuable for sustainable building designs.
Key players in the market
Some of the key players profiled in the Chromoactive Material Market include 3M, Aitex , Alfa Aesar, ChromoGenics, Hail Pigment. Co, Hangzhou Wensheng New Material, Inerdrola, S.A., Merck, Prezi Inc, Saint Gobain, Sichuan Dahua New Material, Sound Bounce, TCI Chemicals, Telux Technology, XeelTech and Zhejiang Henteng Optoelectronics.
In November 2024, Boralex Inc. and Saint-Gobain have announced the signing of a 20-year renewable electricity purchase agreement in France, involving three power plants developed, built, and operated by Boralex.
In October 2024, 3M announced today that its near-term, science-based emissions reduction targets have been validated by the Science Based Targets initiative (SBTi) as being in line with the 1.5° C trajectory of the Paris agreement.
In August 2024, 3M launched new verify app to help tackle counterfeit personal protective equipment. Depending on the type of product, using a counterfeit product could put a person's safety at risk.