Halophosphate Blue Phosphor 447–485 nm Grade ATOMFAIR®

$85.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade halophosphate blue phosphor with 440–470 nm excitation, 447–485 nm emission, D50 8–25 μm and 60–80% efficiency. Order now.

SKU: AF-PH-L-HALO-HPB4-HPB4
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Halophosphate Blue-Emitting Phosphor
Research-grade luminescent powder
Product Overview

This halophosphate blue-emitting phosphor provides a selectable 447–485 nm emission range under blue excitation. It is intended for high-color-gamut illumination and LCD backlighting.

Key specifications include recommended excitation range: 440–470 nm; emission peak range: 447–485 nm; median particle size (d50): 8–25 µm; cie chromaticity coordinate x: 0.150–0.180; cie chromaticity coordinate y: 0.029–0.310; quantum efficiency: 60–80%. These parameters define the available wavelength, optical-performance and physical-processing range for this product.

The product is intended for High-color-gamut lighting and LCD backlighting. Selection should be based on the required emission wavelength or spectral distribution, excitation source, particle-size requirement where stated, processing method and final application.

Technical Specifications
Parameter Specification / Available Range
Atomfair Model AF-HPB466
Product Description Halophosphate Blue-Emitting Phosphor
Material Class Halophosphate phosphor
Recommended Excitation Range 440–470 nm
Emission Peak Range 447–485 nm
Median Particle Size (D50) 8–25 µm
CIE Chromaticity Coordinate x 0.150–0.180
CIE Chromaticity Coordinate y 0.029–0.310
Quantum Efficiency 60–80%
Applications High-color-gamut lighting and LCD backlighting
Key Features & Advantages
  • Selectable blue-emission range.
  • Compatible with 440–470 nm excitation.
  • Specified particle size, color coordinates and quantum efficiency.
  • Suitable for high-color-gamut and backlight applications.
  • Defined parameter range: Recommended Excitation Range: 440–470 nm; Emission Peak Range: 447–485 nm.
  • Application suitability: Designed for High-color-gamut lighting and LCD backlighting.
CHEMICAL POWDER HANDLING: Keep the phosphor sealed, dry and protected from direct light. Minimize airborne dust during transfer, use suitable laboratory protective equipment, and review the applicable safety documentation before handling.
PACKAGING SERVICE: Atomfair can coordinate sealed, moisture-resistant packaging according to the confirmed optical grade, particle-size requirement, quantity and transport conditions.
DELIVERY SUPPORT: Shipment destination, labeling requirements and delivery schedule are confirmed during quotation.
RFQ INFORMATION: Provide the required emission wavelength or spectral configuration, particle-size range, quantity and delivery destination.
PHOSPHOR SELECTION AND QUOTATION SUPPORT
For wavelength selection, particle-size confirmation and quotation support, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This phosphor must be stored sealed, dry, and protected from direct light to prevent degradation. Airborne dust should be minimized during transfer, and appropriate personal protective equipment must be used.

  • Environmental Storage: Store the phosphor in a sealed, dry container and protect from direct light.
  • Dust Control: Minimize airborne dust during transfer to prevent contamination and inhalation.
  • Personal Protective Equipment: Use suitable laboratory protective equipment during handling.
  • Safety Documentation: Review the applicable safety documentation before handling.

This procedure covers the safe handling and storage of halophosphate blue-emitting phosphor powder. The phosphor is sensitive to moisture and light and requires dust control measures.

Required Equipment: Personal protective equipment (PPE)

  1. Review Safety Documentation
    Review the applicable safety documentation before handling the phosphor.
  2. Store Phosphor Properly
    Keep the phosphor sealed, dry and protected from direct light.
  3. Minimize Dust during Transfer
    Minimize airborne dust during transfer of the phosphor.
  4. Use Personal Protective Equipment
    Use suitable laboratory protective equipment during handling.

What is the trade-off between emission peak wavelength and CIE y chromaticity for the AF-HPB466 halophosphate phosphor?

The AF-HPB466 offers a selectable emission peak range of 447–485 nm, with CIE y coordinates spanning 0.029–0.310. Shorter emission wavelengths within this range will yield lower CIE y values, which is critical for achieving wider color gamuts in LCD backlighting, while longer wavelengths increase CIE y, potentially improving color rendering but reducing gamut volume. Selection must balance the target emission wavelength against the required chromaticity coordinates for the specific backlight or illumination application.

Can the AF-HPB466 be excited by a 450 nm blue laser diode, or is it optimized only for LED excitation?

Yes, the AF-HPB466 is compatible with excitation sources in the 440–470 nm range, which includes both 450 nm laser diodes and blue LEDs. The recommended excitation range of 440–470 nm covers common blue pump sources used in high-color-gamut lighting and LCD backlighting. However, the quantum efficiency of 60–80% is specified across this range, so performance at a specific excitation wavelength should be confirmed with the supplier.

What handling precautions are required for the AF-HPB466 halophosphate phosphor powder to maintain optical performance?

The phosphor must be kept sealed, dry, and protected from direct light to prevent moisture absorption and photodegradation, which can reduce quantum efficiency and shift emission properties. During transfer, minimize airborne dust using suitable laboratory protective equipment, and review the applicable safety documentation before handling. Atomfair can provide sealed, moisture-resistant packaging tailored to the confirmed optical grade and particle-size requirement.

This halophosphate blue-emitting phosphor offers a selectable emission peak between 447–485 nm under 440–470 nm excitation, with defined particle size (8–25 µm) and quantum efficiency (60–80%) ranges, making it suitable for high-color-gamut lighting and LCD backlighting applications, though careful handling and storage are required to maintain performance.

Positive

  • Selectable blue emission range: Emission peak can be tuned between 447–485 nm under 440–470 nm excitation, enabling spectral matching for high-color-gamut and backlight applications.
  • Specified physical and optical parameters: Median particle size (8–25 µm), CIE coordinates, and quantum efficiency (60–80%) are provided, allowing informed selection for specific processing and performance requirements.

Trade-offs

  • Strict handling and storage requirements: The phosphor must be kept sealed, dry, and protected from light; airborne dust must be minimized during transfer, requiring appropriate laboratory protective equipment and safety documentation review.
  • Quantum efficiency variability: Quantum efficiency ranges from 60–80%, meaning actual performance may vary within that band; selection may require characterization to confirm efficiency for the target application.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).