市場調查報告書
商品編碼
1467882
2024-2032 年按材料、應用、最終用途產業和地區分類的半導體材料市場報告Semiconductor Materials Market Report by Material, Application, End Use Industry, and Region 2024-2032 |
IMARC Group年全球半導體材料市場規模達559億美元。
半導體材料的電導率範圍介於金屬和絕緣體之間。因此,它們既不表現出導體的特性,也不表現出絕緣體的特性。然而,當它們在摻雜過程後暴露於光、熱或電壓時,它們就會獲得導電的潛力。該過程涉及將少量雜質摻入純半導體中。半導體材料一般分為兩類,即N型和P型。 N型半導體具有過剩的電子,而P型材料具有較高的正電荷。半導體材料表現出可變電阻,並且它們很容易在一個方向上傳遞電流。
半導體材料代表了電子產業的重要創新之一。這可以歸因於其高電子遷移率、寬溫度限制和低能耗。透過採用矽 (Si)、鍺 (Ge) 和砷化鎵 (GaAs) 等材料,電子產品製造商已能夠取代導致電子產品笨重且不便於攜帶的傳統熱電子裝置。因此,這些材料在二極體、電晶體和整合晶片等不同電子元件的製造中有著廣泛的應用。除此之外,這些小型電子元件的出現進一步促進了小型化設備的生產。此外,該行業還受益於物聯網 (IoT) 的出現以及對智慧型手機、筆記型電腦和平板電腦等消費性電子產品不斷成長的需求。
The global semiconductor materials market size reached US$ 55.9 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 76.3 Billion by 2032, exhibiting a growth rate (CAGR) of 3.4% during 2024-2032.
Semiconductor materials have an electrical conductivity range between that of a metal and an insulator. As a result, they neither demonstrate the properties of a conductor nor an insulator. However, they acquire the potential of conducting electricity when they are exposed to light, heat, or voltage post the doping process. This process involves the incorporation of small amounts of impurities to pure semiconductors. Semiconductor materials are generally divided into two categories, namely, N-type and P-type. The N-type semiconductors have an excess of electrons, whereas the P-type materials have a higher positive charge. Semiconductor materials show variable resistance and they pass current easily in one direction.
Semiconductor materials represent one of the essential innovations in the electronics industry. This can be accredited to their high electron mobility, wide temperature limits and low energy consumption. By employing material such as silicon (Si), germanium (Ge) and gallium arsenide (GaAs), electronics manufacturers have been able to replace traditional thermionic devices that made electronic items heavy and non-portable. Consequently, these materials find vast applications in the manufacturing of different electronic components such as diodes, transistors and integrated chips. In addition to this, the availability of these small electronic components has further facilitated the production of miniaturized devices. Additionally, the industry is benefitting from the advent of the Internet of Things (IoT) and the growing demand for consumer electronics, such as smartphones, laptops and tablets.
IMARC Group provides an analysis of the key trends in each sub-segment of the global semiconductor materials market report, along with forecasts at the global and regional level from 2024-2032. Our report has categorized the market based on material, application and end use industry.
Silicon Carbide
Gallium Manganese Arsenide
Copper Indium Gallium Selenide
Molybdenum Disulfide
Bismuth Telluride
Fabrication
Silicon Wafers
Electronic gases
Photomasks
Photoresist ancillaries
CMP Materials
Photoresists
Wet chemicals
Others
Packaging
Leadframes
Organic Substrates
Ceramic Packages
Encapsulation Resins
Bonding Wires
Die-Attach Materials
Others
Consumer Electronics
Manufacturing
Automotive
Energy and Utility
Others
North America
Europe
Asia Pacific
Middle East and Africa
Latin America
The report has also analysed the competitive landscape of the market with some of the key players being BASF SE, LG Chem Ltd, Indium Corporation, Hitachi Chemical Co. Ltd, KYOCERA Corporation, Henkel AG & Company KGAA, Sumitomo Chemical Co. Ltd, DuPont de Nemours Inc., International Quantum Epitaxy PLC., Nichia Corporation, Intel Corporation, UTAC Holdings Ltd, etc.