TiS₃ Crystals
TiS₃ is a layered transition metal trichalcogenide (TMT) with a quasi-one-dimensional (1D) crystal structure. This unique structure endows it with pronounced anisotropic optical and electrical properties, making it an the material for applications in optoelectronics, energy storage, and specialized 2D material research. Combining high electrical conductivity with high photoconductivity, TiS₃ with broad versatility for quantum materials and energy-related applications.
Sample Size Options:
Crystals larger than 10 mm²
Crystals larger than 25 mm²
Crystals larger than 100 mm²
Material Properties:
Quasi-1D Layered Structure: Facilitates the formation of nanoribbons and thin films.
Anisotropic Properties: Exhibits direction-dependent optical and electrical behavior.
High Photoconductivity: Strong light absorption and charge carrier mobility.
Environmental behavior: Maintains structural and chemical integrity under inert conditions.
Crystal Structure:
Type: Orthorhombic
Features: Chain-like layers with van der Waals bonding, permits exfoliation into 2D nanoribbons and sheets.
Degree of Exfoliation:
Ease of Use: Easily exfoliates into thin layers or nanoribbons, making it applicable for 2D material research and specialized device fabrication.
Other Characteristics:
Anisotropic Properties: Distinct direction-dependent electronic and optical characteristics permits specialized applications.
Photoconductivity: High light absorption and carrier mobility make it applicable to photodetectors and other optoelectronic devices.
Chemical behavior: Highly resistant to degradation under inert conditions, with long-term usability.
Applications:
Optoelectronics:
Applicable for photodetectors, photovoltaic devices, and light sensors due to its high photoconductivity and anisotropic optical properties. Quantum Materials Research:
Permits exploration of quasi-1D systems and electronic transport behavior in low-dimensional materials.
2D Material Studies:
Applicable for exfoliating nanoribbons and studying heterostructures in van der Waals systems.
Energy Storage: A promising material for specialized batteries, supercapacitors, and hydrogen evolution reactions (HER). Sensors:
Exhibits high sensitivity to light and environmental stimuli, making it applicable to optical and chemical sensing applications.
| Option 1 | > 10 mm², > 100 mm², > 25 mm² |
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