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NiPS3 Single crystal

$300.00
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Product Name

Name:a>NiPS3 Single crystal

Product Overview

 

NiPS3 single crystal, also known as nickel sulfide phosphide single crystal, has a series of unique characteristics that make it widely applicable in fields such as materials science, electronic devices, and physical performance research. NiPS3 has a layered structure, in which nickel, phosphorus, and sulfur atoms are arranged in a specific manner to form a layered structure. This layered structure endows NiPS3 with some unique physical properties. NiPS3 is a magnetic material with paramagnetic antiferromagnetic transition properties. Its antiferromagnetic N é el temperature is approximately 154 K, indicating that NiPS3 exhibits antiferromagnetic behavior at low temperatures.

NiPS3 also exhibits semiconductor properties, which makes it potentially valuable in the field of electronic devices.

The optical and electrical properties of NiPS3 are also worth paying attention to, which may provide a foundation for its applications in optoelectronic devices, sensors, and other fields. NiPS3 single crystals are usually prepared by methods such as chemical vapor transmission (CVT). This method can prepare high-quality and controllable NiPS3 single crystals.


Technical Parameter

 

Crystal type: Magnetic semiconductor

Purity:99.99%

 

Product Features

 

Layered structure: It is a layered transition metal trihalide.

Van der Waals antiferromagnet: There is strong charge spin coupling.

Serrated antiferromagnetic order coupled with excitons: Theoretically, excitons coupled with serrated antiferromagnetic order can be observed.

Spintronics: Utilizing its charge spin coupling properties, it can be used in spintronic devices.


Application Fields

 

Electronic devices: Due to its semiconductor properties and magnetism, NiPS3 single crystals have broad application potential in the field of electronic devices. For example, it can be used to prepare spintronics devices that utilize the spin properties of electrons for information processing and storage.

Magnetic storage and sensors: The antiferromagnetic properties of NiPS3 make it potentially valuable for applications in fields such as magnetic storage and magnetic sensors. By regulating its magnetic properties, non-volatile storage and detection of information can be achieved.

Optoelectronic devices: The optical and electrical properties of NiPS3 may make it have potential applications in the field of optoelectronic devices such as solar cells and photodetectors.


Related Information

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