Product Category
Online Inquiry

Selenides

Few material families cover as much of the electromagnetic spectrum as the selenides. Zinc selenide optics steer 10.6 μm CO₂ laser beams, lead selenide quantum dots watch the short-wave infrared, and copper indium gallium selenide films convert sunlight into electricity at efficiencies above 23%. One chemistry — selenium bonded to metals — supports all of it.

Eata Energy provides high-purity selenide raw materials for research and industry: semiconductor-grade powders, granules and single crystals, sputtering targets for thin-film deposition, colloidal quantum dots, and CVD-grown two-dimensional crystals. Every batch is delivered with full chemical analysis, and compositions can be tuned to your specification.

Dark metallic selenide crystal chunks with a bluish sheen resting on a slate laboratory surfaceHigh-purity selenide crystals and granules supplied by Eata Energy

What Are Selenides?

Selenides are compounds in which selenium — sitting directly below sulfur in Group 16 — carries a formal −2 charge bonded to one or more less electronegative elements. They behave much like their sulfide cousins, but with a twist that engineers care about: the heavier selenium atom narrows the band gap, raises carrier mobility, strengthens spin–orbit coupling and lowers lattice thermal conductivity. That single substitution turns ordinary semiconductors into record-breaking thermoelectrics, topological insulators and efficient thin-film solar absorbers.

Key Properties of Selenide Materials

  • Extremely wide band-gap range — from roughly 0.28 eV (PbSe) up to about 2.7 eV (ZnSe), one family spans the visible, near-infrared and short-wave infrared, giving absorber and detector design unusual freedom.
  • Record thermoelectric performance — single-crystal SnSe reached ZT = 2.6 at 923 K along the b-axis, and purified polycrystalline SnSe has pushed ZT to ≈3.1 at 783 K; superionic Cu₂Se delivers ZT of 1.5–2.6 in the mid-temperature range.
  • Strong light absorption — CIGS and Sb₂Se₃ absorb above 10⁵ cm⁻¹, so a 1–2 μm film captures nearly the full solar spectrum, and the CIGS band gap tunes continuously from 1.0 to 1.7 eV with the In/Ga ratio.
  • Infrared transparency — CVD-grown ZnSe transmits from 0.5 to 20 μm with absorption below 0.0005 cm⁻¹ at 10.6 μm, making it the standard window and lens material for high-power CO₂ lasers.
  • Quantum confinement — CdSe quantum dots emit narrow, size-tunable light across 480–650 nm, while PbSe dots, with their 46 nm Bohr radius, tune absorption from 800 to 3200 nm for SWIR imaging.
  • Exotic electronic phases — Bi₂Se₃ is the model three-dimensional topological insulator, MoSe₂ and WSe₂ monolayers host valley-selective physics, and FeSe superconducts, giving quantum researchers a rich playground.

Selenide Materials We Supply

Material Formula Band Gap Typical Applications
Zinc Selenide ZnSe 2.7 eV CO₂ laser optics, IR windows, ATR prisms
Cadmium Selenide CdSe 1.73 eV Quantum dots, QLED displays, research emitters
Lead Selenide PbSe 0.28 eV SWIR photodetectors, 800–3200 nm imaging
Tin Selenide SnSe ~0.9 eV High-ZT thermoelectric generators
Copper Selenide Cu₂Se ~1.2 eV Superionic thermoelectrics, electrodes
Antimony Selenide Sb₂Se₃ 1.1–1.3 eV Earth-abundant thin-film solar absorbers
Bismuth Selenide Bi₂Se₃ ~0.3 eV Topological insulators, thermoelectrics
Molybdenum Diselenide MoSe₂ 1.5 eV (ML) 2D transistors, electrocatalysis
Tungsten Diselenide WSe₂ 1.6 eV (ML) 2D optoelectronics, valleytronics
CIGS Cu(In,Ga)Se₂ 1.0–1.7 eV Thin-film photovoltaics, 23.4% record
Iron Selenide FeSe — Unconventional superconductivity research
Arsenic Selenide As₂Se₃ ~1.8 eV Chalcogenide glass, mid-IR fibers

Band gaps are bulk values at room temperature unless noted; ML = monolayer.

Available Forms

  • Powders and nanopowders — 4N–6N purity, micron to sub-micron, passivated or dry-packed under argon
  • Granules and shot — evaporation and CVD feedstock with controlled particle size
  • Single crystals — Bridgman and vapor-transport-grown, oriented, for optics and fundamental research
  • Sputtering and evaporation targets — binary through quaternary compositions, including CIGS stoichiometries, bonded to backing plates
  • Quantum dot dispersions — CdSe and PbSe cores and core/shell structures supplied in solvent
  • 2D material crystals and films — MoSe₂ and WSe₂ bulk crystals plus CVD monolayers on substrates

Applications of Selenides

Thin-Film Photovoltaics

CIGS is the flagship selenide technology in solar energy. Laboratory cells have reached a champion efficiency of 23.4%, and flexible devices grown on polymer foils exceed 22%, all from an absorber layer only 1–2 μm thick. Because the band gap tunes from 1.0 to 1.7 eV, CIGS also pairs naturally with perovskite top cells — perovskite/CIGS tandems have already passed 24% and modeled devices approach 30%. Antimony selenide is the fast-rising alternative: earth-abundant and low-toxicity, Sb₂Se₃ cells hold a certified record of 10.57%, and new homojunction designs are rapidly closing the voltage gap.

A curved flexible CIGS thin-film solar sheet showing its copper-toned cell gridFlexible CIGS thin-film photovoltaic cell based on copper indium gallium selenide

Thermoelectric Energy Conversion

Selenides dominate modern thermoelectrics. SnSe single crystals hold the celebrated ZT = 2.6 record at 923 K, and careful purification of polycrystalline SnSe has since reached ZT ≈ 3.1 at 783 K. Superionic Cu₂Se converts mid-grade industrial heat with ZT between 1.5 and 2.6, while Ag₂Se-based films operate near room temperature at ZT around 1.2 and flex with wearable and curved-surface devices. Together they cover waste-heat recovery from exhaust piping, engine systems and process lines.

Thermoelectric generator modules with cooling fins clamped around an industrial steel pipeSelenide thermoelectric modules recovering waste heat from exhaust piping

Infrared Optics and High-Power Lasers

CVD zinc selenide is the workhorse of CO₂ laser optics. It transmits from 0.5 to 20 μm, absorbs less than 0.0005 cm⁻¹ at the 10.6 μm laser line, and survives continuous power densities above 15 kW/cm²; with anti-reflection coatings, transmittance tops 99.5%. The same material serves FLIR protective windows and ATR prisms for infrared spectroscopy. Further into the mid-infrared, As₂Se₃ chalcogenide glass is drawn into fibers and molded lenses that carry light well beyond the reach of silica.

Amber zinc selenide lenses and infrared window discs arranged on a dark reflective surfacePolished ZnSe optics for CO₂ laser and thermal imaging systems

Quantum Dots, Displays and Imaging

Cadmium selenide is the classic quantum dot: by simply changing particle size, its emission sweeps 480–650 nm with narrow linewidths — the physics already behind commercial QLED televisions. Lead selenide dots extend the same idea into the short-wave infrared, where their 46 nm Bohr radius allows absorption tuning from 800 to 3200 nm and solution-processed SWIR cameras are now a commercial reality. Both systems depend on precursor purity, which is exactly where controlled selenide chemistry matters.

Three glass vials of quantum dot solutions fluorescing orange, red and green under ultraviolet lightColloidal selenide quantum dots emitting size-tunable visible light

2D Electronics and Quantum Research

Mechanically exfoliated or CVD-grown MoSe₂ and WSe₂ monolayers are direct-gap semiconductors (about 1.5 and 1.6 eV) with strong spin–valley coupling — the platform for valleytronics, tunneling devices and single-photon emitters. Bi₂Se₃ remains the benchmark topological insulator for surface-state studies, and FeSe keeps surprising the superconductivity community. All of these experiments start from high-quality bulk crystals grown by vapor transport or flux methods, where stoichiometry control is decisive.

A glowing orange quartz tube inside a horizontal furnace used for selenide crystal growthHigh-temperature tube furnace for growing selenide single crystals

Batteries and Electrocatalysis

Layered selenides are gaining ground in energy storage as well. MoSe₂ and WSe₂ accommodate sodium and potassium ions between their van der Waals gaps, making them candidate anodes for post-lithium batteries, and their edge sites catalyze the hydrogen evolution reaction. Cu₂Se serves both as a conversion electrode and as a model system for studying fast-ion transport in solids.

Why Source Selenides from Eata Energy

Purity decides performance in selenide devices — a few ppm of oxygen or halide residue can erase the advantage that motivated the material choice. Eata Energy supplies selenides at 4N–6N purity with batch-specific ICP-MS certificates, so the numbers on your datasheet match the material in your reactor.

  • Consistent stoichiometry from gram-scale research orders to kilogram pilot batches
  • Air- and moisture-sensitive compounds sealed under argon in ampoules or dry-packed jars
  • Documented lot traceability and retained samples for every shipment
  • Technical support from staff who work with chalcogenide chemistry daily

Custom Selenide Services

Need something beyond the catalog? We prepare custom compositions such as CuIn₁₋ₓGaₓSe₂ with your target In/Ga ratio, sulfur-alloyed Sb₂(S,Se)₃, and doped variants (Na-, Cl- or Br-doped) on request. Particle-size engineering, target fabrication and bonding, substrate-deposited films, and quantum dots with specified emission wavelengths are all routine projects for our team. Send us your specification — we respond with a technical proposal, not just a price list.

Catalog Number Product Name Order Quantity
CHA-SUL-0143 Mercury Indium Selenide Granule Inquiry
- +
CHA-SUL-0144 Mercury Selenide Inquiry
- +
CHA-SUL-0145 Molybdenum Selenide Flakes Inquiry
- +
CHA-SUL-0146 Neodymium Selenide Inquiry
- +
CHA-SUL-0147 Nickel Selenide Inquiry
- +
CHA-SUL-0148 NiCoSe2 Crystal Inquiry
- +
CHA-SUL-0149 Niobium Diselenide Crystal Inquiry
- +
CHA-SUL-0150 Niobium Selenide Inquiry
- +
CHA-SUL-0151 Osmium Selenide Inquiry
- +
CHA-SUL-0152 Palladium Selenide Inquiry
- +

For Research or Industrial Raw Materials, Not For Personal Medical Use!

0
0

There is no product in your cart.