# Recent progress in Fe- and Ru-based full-Heusler bulk thermoelectrics

https://mdr.nims.go.jp/datasets/4f532702-5f4c-4b6f-b66b-30c7a2e32923

## File

- [STAM--Recent progress in Fe- and Ru-based full-Heusler bulk thermoelectrics.pdf](https://mdr.nims.go.jp/filesets/f2989e03-cf73-4452-9038-8e962686a81a/download) ([Detail](https://mdr.nims.go.jp/filesets/f2989e03-cf73-4452-9038-8e962686a81a.md))

## Id

4f532702-5f4c-4b6f-b66b-30c7a2e32923

## Local identifier



## Visibility

open_to_public

## State

published

## Created at

2025-11-08T15:26:51.832546Z

## Updated at

2025-11-11T03:30:25.154509Z

## Published at

2025-11-11T03:22:32.547388Z

## Doi



## First published url

https://doi.org/10.1080/14686996.2025.2517537

## Date published

2025-12-31

## Recorded date published

2025-12-31

## Resource type

journal_article

## Manuscript type

vor

## Collection



## Title

- title: Recent progress in Fe- and Ru-based full-Heusler bulk thermoelectrics
  title_type: original
  lang: en

## Description

- description: Full-Heusler compounds represent a rich and diverse class of functional
    materials, covering a large compositional phase space. Representatives with 24
    valence electrons are commonly semimetals or narrow-gap semiconductors as per
    the Slater-Pauling rule, and are thus considered as thermoelectric materials,
    especially for room-temperature applications. Research on the archetypal thermoelectric
    full-Heusler compound Fe2VAl began over two decades ago, and since then, significant
    progress has been made in enhancing its thermoelectric performance. Advances have
    been achieved through various intrinsic and extrinsic substitutions, grain boundary
    engineering, and other optimization strategies. Here, recent advancements are
    reviewed, challenges for the further development of competitive full-Heusler thermoelectrics
    are identified, and novel routes and concepts are highlighted that could make
    these materials viable for energy harvesting and cooling applications near room-temperature.
  description_type: abstract
  lang: und

## Creator

- name: F. Garmroudi
  role: author
- name: M. Parzer
  role: author
- name: T. Mori
  role: author
  orcid: https://orcid.org/0000-0003-2682-1846
  organization: National Institute for Materials Science
- name: E. Bauer
  role: author

## Contact agent



## Publisher

organization: Informa UK Limited

## Managing organization



## Keyword

- subject: thermoelectric
  schema: not_defined

## Rights

- identifier: https://creativecommons.org/licenses/by/4.0/

## Other identifier(s)



## Data origin

- data_origin_type: other

## Embargo



## Journal

- title: Science and Technology of Advanced Materials
  issn: '14686996'
  volume: '26'
  issue: '1'
  article_number: '2517537'

## Conference



## Related item



## Funding

- identifier: JPMJMI19A1
  funder_name: Japan Science and Technology Agency

## Instrument



## Instrument operator



## Instrument managing organization



## Measurement method



## Specimen



## Chemical composition



## Structure for specimen



## Structural feature for specimen



## Specific property for specimen



## Process for specimen treatment



## Computational method



## Energy level/transition state



## Software



## Custom property



## Fileset

- id: f2989e03-cf73-4452-9038-8e962686a81a
  filename: STAM--Recent progress in Fe- and Ru-based full-Heusler bulk thermoelectrics.pdf
  content_type: application/pdf
  size: 9748093
  md5: f3a756ed0007091f62aa40b11d70449e

## Thumbnail

fileset_id: f2989e03-cf73-4452-9038-8e962686a81a
filename: STAM--Recent progress in Fe- and Ru-based full-Heusler bulk thermoelectrics.pdf