请输入您要查询的百科知识:

 

词条 Bismuth germanate
释义

  1. Bi4Ge3O12

  2. Bi12GeO20

  3. See also

  4. External links

  5. References

Bismuth germanium oxide or bismuth germanate is an inorganic chemical compound of bismuth, germanium and oxygen. Most commonly the term refers to the compound with chemical formula {{Bismuth}}4{{Germanium}}3{{Oxygen}}12 (BGO), with the cubic evlitine crystal structure, used as a scintillator. (The term may also refer to a different compound with formula Bi12GeO20, an electro-optical material with sillenite structure, and {{Bismuth}}2{{Germanium}}3{{Oxygen}}9.)

Bi4Ge3O12

When irradiated by x-rays or gamma rays, bismuth germanate emits photons of wavelengths between 375-650 nm, with peak at 480 nm. It produces about 8500 photons per megaelectronvolt of the high energy radiation absorbed. It has good radiation hardness (parameters remaining stable up to 5.104 Gy), high scintillation efficiency, good energy resolution between 5-20 MeV, is mechanically strong, and is not hygroscopic. It has very high density, 7.13 g/cm³ and a high Z value. Its melting point is 1050 °C. It is the most common oxide-based scintillator.

Bismuth germanium oxide is used in detectors in particle physics, aerospace physics, nuclear medicine, geology exploration, and other industries. Bismuth germanate arrays are used for gamma pulse spectroscopy. BGO crystals are also used in positron emission tomography detectors.

Commercially available crystals are grown by the Czochralski process and usually supplied in the form of cuboids or cylinders. Large crystals can be obtained.

Bi12GeO20

Bismuth germanate has high electro-optic coefficients (3.3 pm/V for Bi12GeO20),[1] making it useful in nonlinear optics for building Pockels cells, and can also be used for photorefractive devices for ultraviolet range.

The Bi12GeO20 crystals are piezoelectric, show strong electro-optical and acousto-optical effects, and find limited use in the field of crystal oscillators and SAW devices.[2] Single crystal rods and fibers can be grown by floating zone process from a rod of mixture of bismuth oxide and germanium oxide.[3] The crystals are transparent and brown colored.[4]

The crystals of BGO and similar compounds BSO (Bi12SiO20, bismuth silicon oxide, sillenite) and BTO (Bi12TiO20), are photorefractive and photoconductive. BGO and BSO crystals are efficient photoconductors with low dark conductivity. They can be used in electro-optical applications, like optical PROM, PRIZ spatial light modulators, realtime hologram recording, correlators, and systems for adaptive correction of ultrashort laser pulses, and in fiber optic sensors for electric and magnetic fields. Waveguide structures allow uniform illumination over wide spectral range. Thin film sillenite structures, which can be deposited e.g. by sputtering, have wide range of potential applications. BSO crystals are used in optically addressed spatial light modulators and in liquid crystal light valves.[5] The optical activity of BTO is much smaller than of BGO and BSO.[6] Unlike somewhat similar performing perovskites, sillenites aren't ferroelectric.

The materials can find use in phased-array optics.

When sputtering, the target has to be kept below 450 °C as otherwise the bismuth vapor pressure would get the composition out of stoichiometry, but above 400 °C to form the piezoelectric γ phase.[7]

See also

  • Scintillating bolometer
  • Germanate

External links

  • Scintillation crystals

References

{{Refimprove|date=July 2009}}
1. ^{{cite book | last = Lide | first = David R. | year = 1998 | title = Handbook of Chemistry and Physics | edition = 87 | volume = | location = Boca Raton, FL | publisher = CRC Press | isbn = 0-8493-0594-2 | pages = 2263}}
2. ^http://www.txccorp.com/download/tech_paper/2004-IWSIMPCRFIC-1-English.pdf
3. ^{{cite journal|last1=Fu|first1=S.|last2=Ozoe|first2=H.|journal=Journal of Materials Science|title=Growth of Bi12GeO20 crystal rods and fibers by the improved floating zone method|volume=34|issue=2|year=1999|pages=283–290|issn=0022-2461|doi=10.1023/A:1004430311364}}
4. ^{{Cite web|url = http://www.uam.es/departamentos/ciencias/fisicamateriales/especifica/grupos/crystal_growth_lab/cgl_technology.html|title = Technology Crystal Growth Laboratory (CGL): single crystals, nanotechnology|website = www.uam.es|access-date = 2016-04-09}}
5. ^{{Cite web|url = http://www.alkor.net/photorefractive_crystal_BGO.html|title = Sillenite Photorefractive Crystals (BGO and BSO) - Alkor Technologies|website = www.alkor.net|access-date = 2016-04-09}}
6. ^{{Cite book|url = https://books.google.com/books?id=Ad5G1HWtDRgC|title = Springer Handbook of Lasers and Optics|last = Träger|first = Frank|date = 2012-05-05|publisher = Springer Science & Business Media|isbn = 9783642194092|language = en}}
7. ^{{Cite book|url = https://books.google.com/books?id=pmpV4RYHpdcC|title = Thin Film Materials Technology: Sputtering of Compound Materials|last = Wasa|first = Kiyotaka|last2 = Kitabatake|first2 = Makoto|last3 = Adachi|first3 = Hideaki|date = 2004-05-10|publisher = William Andrew|isbn = 9780815519317|language = en}}
{{Bismuth compounds}}{{DEFAULTSORT:Bismuth Germanate}}

5 : Bismuth compounds|Nonlinear optical materials|Phosphors and scintillators|Crystals|Germanates

随便看

 

开放百科全书收录14589846条英语、德语、日语等多语种百科知识,基本涵盖了大多数领域的百科知识,是一部内容自由、开放的电子版国际百科全书。

 

Copyright © 2023 OENC.NET All Rights Reserved
京ICP备2021023879号 更新时间:2024/11/13 16:18:48