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Electron-hole pair creation and conversion efficiency in radioisotope microbatteries

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posted on 2023-06-10, 02:13 authored by Grammatiki LioliouGrammatiki Lioliou, Anna BarnettAnna Barnett
The ultimate conversion efficiency of semiconductor radioisotope microbatteries is set by the average energy consumed in the creation of an electron-hole pair, ?. Although the Klein relationship between ? and semiconductor bandgap, Eg, is widely cited, not only for radioisotope microbatteries, but indeed for a multitude of fields requiring accurate values of ?, its validity has been recently questioned; new experimental measurements have resulted in the refined Bertuccio-Maiocchi-Barnett (BMB) relationship. Here, it is shown that the new relationship indicates the ultimately achievable conversion efficiencies of radioisotope microbatteries are much greater than had ever been expected. For example, it appears possible to produce planar 63Ni-Diamond radioisotope microbatteries with output powers 130× greater than has currently been achieved. The ultimate limit for batteries employing pore channels rather than planar designs is likely to be even greater still. These new findings open the possibility of using radioisotope microbatteries in a far greater variety of applications than has been traditionally assumed. As well as being of direct applicability to radioisotope microbatteries, the results highlight the need to reconsider the use of the Klein relationship in all fields that currently employ it.

History

Publication status

  • Published

File Version

  • Accepted version

Journal

Applied Radiation and Isotopes

ISSN

0969-8043

Publisher

Elsevier

Volume

180

Page range

1-5

Article number

a110042

Department affiliated with

  • Physics and Astronomy Publications

Full text available

  • Yes

Peer reviewed?

  • Yes

Legacy Posted Date

2022-01-07

First Open Access (FOA) Date

2022-11-26

First Compliant Deposit (FCD) Date

2022-01-07

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