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市場調査レポート
商品コード
1355015
近赤外線吸収材料の世界市場の評価:材料別、吸収範囲別、用途別、エンドユーザー別、地域別、機会、予測(2016年~2030年)Near Infrared Absorbing Materials Market Assessment, By Material, By Absorption Range, By Application, By End User, By Region, Opportunities and Forecast, 2016-2030F |
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カスタマイズ可能
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近赤外線吸収材料の世界市場の評価:材料別、吸収範囲別、用途別、エンドユーザー別、地域別、機会、予測(2016年~2030年) |
出版日: 2023年10月02日
発行: Market Xcel - Markets and Data
ページ情報: 英文 129 Pages
納期: 3~5営業日
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世界の近赤外線吸収材料の市場規模は、2022年の2億7,832万米ドルから2030年に5億2,280万米ドルに達し、2023年~2030年の予測期間にCAGRで8.2%の成長が予測されています。
JEITAが発表したデータによると、2022年の電子・IT産業の世界の総生産金額は約1%増加し、3兆4,368億米ドルに達すると推定されています。電子産業の驚異的な成長は、光検出器として実装する有機NIR吸収材料の世界市場を独占する機会を著しく生み出しています。
近赤外線吸収材料は、先進のデジタルカメラやイメージングデバイスの開発において重要であると考えられています。近赤外線吸収材料の製造には、複雑な合成プロセス、精巧な装置、先進のモニタリングコントロールが必要です。このような重要な工程を経るたびに、材料にかかるコストは膨大なものとなり、NIR材料をより多くの部門で広く使用するための大きな課題となっています。
NIR吸収材料は、その生体適合性、皮膚関連治療、医用画像により、医療部門で徐々に使用され、画像診断や特定の治療にその特性を大幅に活用しています。近赤外線吸収材料の広範な用途は、それぞれの領域と国において巨大な機会とともに世界の市場規模の成長を促進しています。
パンデミック中、治療法の増加により医療部門が大きな活況を呈したため、NIR分光法は大いに勢いを増しました。その後、NIR吸収材料を使用して、この分光法はCOVID-19ワクチンの認証に使用され、迅速かつ効果的な技術として認識されています。COVID-19パンデミックの間、世界の近赤外線吸収材料市場はCOVID-19ワクチンを認証するために効果的に成長し、近赤外線吸収材料の巨大市場を生み出しました。
ロシアによるウクライナへの侵攻は、さまざまな部門に前例のないの影響をもたらし、それに伴う投資の不安定化を招きました。この侵攻は世界のサプライチェーン関係、原材料の現況などに大きな影響を与えました。近赤外線吸収材料は、さまざまな医療部門で使用される必要不可欠な赤外線機器の製造に大きな打撃を受けました。米国と西側諸国がロシアに課した厳しい制裁措置は、技術材料の貿易力学とそれぞれの技術の共有に深刻な影響を与えました。しかし、医療部門における市場商品の増加に伴い、NIR吸収材料の需要は世界中で巨大な市場の潜在性を生み出しています。
近赤外線吸収材料はさまざまな重要部門で幅広く使用されているため、市場を大きく牽引しており、ハイテク企業が特定の特性に関連した革新的な製品を開発することを後押ししています。世界の酸化スズの主要企業であるKeeling & Walkerは、10~50nmの凝集ナノ粒子からなる特定の範囲のNIR吸収材料を開発しました。
社内のすべての近赤外線吸収材料は、ISO 9001品質保証規格に準拠して製造されています。環境保全と持続可能な開発に基づき、Keeling & WalkerはISO 14001環境管理規格の下でNIR製品を製造しています。
当レポートでは、世界の近赤外線吸収材料市場について調査分析し、市場規模と予測、市場力学、主要企業の情勢と見通しなどを提供しています。
Global near infrared absorbing materials market size was valued at USD 278.32 million in 2022, which is expected to reach USD 522.8 million in 2030, with a CAGR of 8.2% for the forecast period between 2023 and 2030. Infrared light (700-2500 nm) is imperative in various technological applications like heating and drying thermoplastic polymers, coatings, printings, etc. Near infrared material absorbing material must have a specific molecular configuration where excitation of electrons can only lead to absorption of infrared light. Sophisticated and advanced instruments can particularly evaluate material properties, including prominent parameters like transmittance, spectra, and reflectance.
The near infrared absorbing materials have extensive applications in the healthcare sector, including non-imaging lasers. Medical domain practices such as skin treatment, surgery, spectroscopy, thermography, etc. are accomplished using NIR absorbing materials. NIR absorbing materials are used for preparing absorbing dyes that are progressively used as photothermal conversion materials, thermal media materials, etc., which can effectively work in different absorption spectrum ranges.
Organic materials that are optically active in the wavelength of (1000-2000 nm) range of near-infrared region (NIR) are profoundly emerging materials for applications in photonics and telecommunications. Organic materials are usually optically, thermally, and electrically active in the NIR region, where they can be used for optical attenuation and absorption or antireflection. NIR-absorbing organic semiconductors have generated extreme potential for the organic photovoltaic industry and created multiple applications, including transparent OPVS, tandem OPVs, and photodetectors. Unique properties such as tailorable optoelectronic characteristics, compatibility with flexible substrates, etc. are implementing extensive usage of NIR organic absorbing materials as photodetectors (NIR OPDs).
The data published by the JEITA stated that in 2022, the total global production of electronics and IT industry is estimated to rise by approximately 1% to reach USD 3,436.8 billion. The phenomenal rise in the electronics industry is significantly generating global opportunities for organic NIR absorbing materials to implement as photodetectors that dominate the market.
Near infrared absorbing materials are considered important in the development of advanced digital cameras and imaging devices. The production of NIR materials involves complex synthesis process, sophisticated equipment, and advanced monitoring control. Every crucial step account for the huge cost of materials where it creates a significant challenge for the widespread usage of NIR materials in more sectors.
NIR absorbing white material comprising the copper pyrophosphate was produced using a wet synthesis process. An aqueous solution of a divalent copper compound and a metal pyrophosphate is formed as a supersaturated solution. The synthesis process is accompanied by stirring, mixing, filtration, acid treatment, washing, and drying, making the manufacturing process complex and costly. However, heat-absorbing glass is formed by NIR absorption of iron components and can be manufactured inexpensively, where these glasses are substantially used in shielding window glass from solar radiation.
The laser-skin interaction for skin surface applications like hair removal, tattoo removal, wound healing depending upon various NIR wavelengths achieves NIR absorbing materials. Medical or healthcare sectors have benefited from using Medical NIR absorbing materials. Healthcare applications such as surgery, skin treatment, spectroscopy, or thermography, NIR absorbing materials are incorporated in such applications. Medical devices such as laboratory-level instruments, are used in hospitals, health centers, clinical trials, etc. Treatments related to human tissue can be effectively accomplished using NIR wavelengths.
A structured data stated that in 2021, the United States has prominently spent around 17.8% of their gross domestic product (GDP) on healthcare sectors which is nearly twice greater than the OECD country. NIR absorbing materials are progressively used in medical and healthcare sectors due to their biocompatibility, skin-related treatments, and medical imaging, substantially utilizing their characteristics for diagnostic imaging and specific therapies. The extensive applications of NIR absorbing materials is propelling the global market size growth with huge opportunities in the respective domains and countries.
A fast and cost-effective diagnosis method for COVID-19 disease was imperatively necessary in monitoring its proliferation. NIR-spectroscopy is an inexpensive technique for profiling COVID-19 disease that utilizes NIR absorbing materials. It significantly gained momentum during the pandemic as the healthcare sector got a tremendous boom with the rising treatments. Subsequently using NIR absorbing materials this spectroscopic method is used for authentication of COVID-19 vaccines which is recognized as a rapid and effective technique. Potentially during the COVID-19 pandemic the global near infrared absorbing materials market was growing effectively to authenticate COVID-19 vaccines which generated huge market for near infrared absorbing materials.
The invasion of Russia on Ukraine has created unprecedented impact across various sectors leading to instability in sequential investment. The aggression has profoundly affected the global supply chain relationship, raw materials incumbency, etc. The NIR absorbing materials significantly got hit to implement in manufacturing essential infrared equipment that substantially have application in the various healthcare sectors. The harsh sanctions imposed by the United States and Western countries on Russia has severely impacted trade dynamics of technological materials and sharing of respective technologies. But with the growing market commodities in the healthcare sector, the demand of NIR absorbing materials is generating huge market potential across the globe.
The wide usage of Near Infrared Absorbing Materials in different essential sectors significantly drives the NIR absorbing materials market, encouraging high-tech companies to develop innovative products related to specific properties. Keeling & Walker, a leading global company in tin oxide have developed NIR absorbers in a particular range that comprises of agglomerated nanoparticles in the range of 10-50nm. The key materials in the NIR absorbing are antimony tin oxides, indium tin oxides, and doped tungsten oxides with specific performance profiles.
All NIR absorbing materials in the company are manufactured in compliance with the ISO 9001 Quality Assurance Standard. Based on environmental integrity and sustainable development, Keeling & Walker manufactures NIR products under the ISO 14001 Environmental Management Standard.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work