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Forming Glasses from Se and Te

Journal

MOLECULES
Volume 14, Issue 11, Pages 4337-4350

Publisher

MDPI AG
DOI: 10.3390/molecules14114337

Keywords

selenium; tellurium; glass; infrared

Funding

  1. Division Of Materials Research
  2. Direct For Mathematical & Physical Scien [0806333] Funding Source: National Science Foundation

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Despite being close neighbors on the Periodic Table, selenium and tellurium present a totally different abilities to form glasses. Se is a very good glass former, and gives rise to numerous glass compositions which are popular for their transparency in the infrared range and their stability against crystallization. These glasses can be shaped into sophisticated optical devices such as optical fibers, planar guides or lenses. Nevertheless, their transparencies are limited at about 12 mu m (depending on the thickness of the optical systems) due to the relatively small mass of the Se element. On the other hand, tellurium is heavier and its use in substitution for Se permits to shift the IR cutoff beyond 20 mu m. However, the semimetallic nature of Te limits its glass formation ability and this glass family is known to be unstable and consequently has found application as phase change material in the Digital Versatile Disk (DVD) technology. In this paper, after a review of selenide glasses and their applications, it will be shown how, in a recent past, it has been possible to stabilize tellurium glasses by introducing new elements like Ga or I in their compositions.

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