Tiedustelu
  • Pyrolytic Boron Nitride PBN VGF Crucible
  • Pyrolytic Boron Nitride PBN VGF Crucible
  • Pyrolytic Boron Nitride PBN VGF Crucible
  • Pyrolytic Boron Nitride PBN VGF Crucible

Pyrolytic Boron Nitride PBN VGF Crucible

Our Pyrolytic Boron Nitride (PBN) VGF crucibles are specifically designed for the Vertical Gradient Freeze (VGF) method – a leading technique for growing high-quality compound semiconductor single crystals such as GaAs, InP, GaP, and CdTe.
  • Ultra-high purity 99.999%
  • Non-wetting surface
  • High temperature stability
  • Exceptional thermal uniformity
  • Tuotetiedot

Pyrolytic Boron Nitride PBN Products

Pyrolytic Boron Nitride PBN Products

Product Overview

Pyrolytic Boron Nitride (PBN) is fabricated by the well-known Chemical Vapor Deposition (CVD) process in which the ammonia gas (NH3) and a gaseous boron halide such as boron trichloride(BCI3) react in a high-temperature CVD furnace to deposit PBN on an appropriate substrate such as Pyrolytic Graphite.

PBN is known as an excellent choice for high-temperature furnace and electrical components, semiconductor, and microwave compound crystals such as germanium(Ge), gallium arsenide(GaAs), and indium phosphate(InP) owing to its intrinsic purity, superior mechanical properties, and physicochemical stability. PBN can withstand at 1800°C in vacuum and 2000°C in nitrogen, introducing it as a good choice for furnace components and melting vessels.

 

Our Pyrolytic Boron Nitride (PBN) VGF crucibles are specifically designed for the Vertical Gradient Freeze (VGF) method – a leading technique for growing high-quality compound semiconductor single crystals such as GaAs, InP, GaP, and CdTe

Manufactured by chemical vapor deposition (CVD), these crucibles provide the thermal properties, purity, and surface inertness essential for defect‑free, high-yield crystal growth.


Typical Properties

  • Layered structure with hexagonal crystal lattice

  • Special properties perpendicular to the basal plane of the crystal

  • Superior structural and physicochemical stability

  • Anisotropic structure

  • High thermal stability

  • Non-wetting

  • Non-toxic


Typical Applications

  • Crucibles for the growth of semiconductor crystals

  • Wave tubes for RF and microwave

  • Windows subjecting to microwave radiation

  • Electrical insulator

 


PBN Product Range

PBN with unique properties and high structural and physicochemical stability can be the best choice as:


  • PBN crucibles for Vertical Gradient Freezing (VGF) process

  • PBN crucibles for Liquid encapsulation Czochralski (LEC) process

  • PBN crucibles for Molecular Beam Epitaxy (MBE) process

  • PBN crucibles for Organic Light Emitting Diode (OLED) process

  • PBN boats for compound semiconductors and alloys processing

  • PBN Metal-Organic CVD (MOCVD) insulation boards and MBE insulation rings

  • PBN electrical insulation bushings for high-temperature vacuum equipment

  • PBN traveling wave tube (TWT) with spiral structure

  • PBN Electrostatic Chuck

  • PBN-PG composite heaters

 

GDMS Analysis

Analytical Element

Result(μg/g)

Analytical Element

Result(μg/g)

Li

<0.005

Si

1.7

F

<0.005

CI

<0.005

Na

<0.005

S

<0.005

 



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