Product Introduction
Niobium oxide (Nb₂O₅) is a high-performance inorganic functional material, commonly used in vacuum evaporation coating, electron beam evaporation, etc.. This material has a high refractive index, excellent dielectric properties, and good chemical stability. It is widely used in the preparation of optical films, electronic devices, and functional layers, making it one of the indispensable key materials in high-end optical and microelectronics fields.
Outstanding Characteristics of Niobium Oxide
High Refractive Index
Niobium oxide films have a high refractive index of 2.1-2.35 (at 500nm), making them suitable for the preparation of multilayer optical films such as interference coatings, reflective coatings, and optical filters.
Excellent Dielectric Properties
It has good transparency and low absorption properties, making it suitable for optical components from visible to near-infrared wavelengths.
High Dielectric Constant
As a high-k dielectric material, it effectively enhances capacitance performance and meets the miniaturization and high-performance demands of semiconductor devices.
Strong Chemical Stability
It maintains stable performance in high-temperature, humid, and chemically corrosive environments, extending the lifespan of devices.
Wide Applications of Niobium Oxide
Semiconductor Manufacturing
As a high-k dielectric material, it is used in core components such as capacitors and transistors, enabling lower power consumption and higher performance microelectronic devices.
Optical Device Manufacturing
Widely used in the design of high-precision optical films, such as optical filters, anti-reflective coatings, interference coatings, and optical lens coatings, it can effectively improve the transmittance and durability of devices.
Photovoltaic Industry
Used as a functional layer in thin-film solar cells to improve photovoltaic conversion efficiency, while also enhancing the stability and lifespan of the devices.
Technical characteristics

Refractive index
2.1-2.35(500nm)

Transparent band
350-9000nm
Application scenarios
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