TY - JOUR
T1 - Materials Genomics Search for Possible Helium-Absorbing Nano-Phases in Fusion Structural Materials
AU - Xu, Haowei
AU - Kim, So Yeon
AU - Chen, Di
AU - Monchoux, Jean Phillippe
AU - Voisin, Thomas
AU - Sun, Cheng
AU - Li, Ju
N1 - Funding Information:
This work was supported by Eni S.p.A. through the MIT Energy Initiative. S.Y.K. gratefully acknowledges partial financial support by the Kwanjeong Scholarship. C. S. acknowledges the support by the U.S. Department of Energy, Laboratory Directed Research and Development (LDRD) program at Idaho National Laboratory, under contract No. DE‐AC07‐051D14517. T.V. acknowledges the auspices of the U. S. Department of Energy by Lawrence Livermore National Laboratory under contract No. DE‐AC52‐07NA27344. The calculations in this work were performed in part on the Texas Advanced Computing Center (TACC) and MIT engaging cluster.
Funding Information:
This work was supported by Eni S.p.A. through the MIT Energy Initiative. S.Y.K. gratefully acknowledges partial financial support by the Kwanjeong Scholarship. C. S. acknowledges the support by the U.S. Department of Energy, Laboratory Directed Research and Development (LDRD) program at Idaho National Laboratory, under contract No. DE-AC07-051D14517. T.V. acknowledges the auspices of the U. S. Department of Energy by Lawrence Livermore National Laboratory under contract No. DE-AC52-07NA27344. The calculations in this work were performed in part on the Texas Advanced Computing Center (TACC) and MIT engaging cluster.
Publisher Copyright:
© 2022 The Authors. Advanced Science published by Wiley-VCH GmbH.
PY - 2022/11/14
Y1 - 2022/11/14
N2 - Civilian fusion demands structural materials that can withstand the harsh environments imposed inside fusion plasma reactors. The structural materials often transmute under 14.1 MeV fast neutrons, producing helium (He), which embrittles the grain boundary (GB) network. Here, it is shown that neutron-friendly and mechanically strong nano-phases with atomic-scale free volume can have low He-embedding energy (Formula presented.) and >10 at.% He-absorbing capacity, and can be especially advantageous for soaking up He on top of resisting radiation damage and creep, provided they have thermodynamic compatibility with the matrix phase, satisfactory equilibrium wetting angle, as well as a high enough melting point. The preliminary experimental demonstration proves that (Formula presented.) is a good ab initio predictor of He shielding potency in nano-heterophase materials, and thus, (Formula presented.) is used as a key feature for computational screening. In this context, a list of viable compounds expected to be good He-absorbing nano-phases is presented, taking into account (Formula presented.), the neutron absorption and activation cross-sections, the elastic moduli, melting temperature, the thermodynamic compatibility, and the equilbrium wetting angle of the nano-phases with the Fe matrix as an example.
AB - Civilian fusion demands structural materials that can withstand the harsh environments imposed inside fusion plasma reactors. The structural materials often transmute under 14.1 MeV fast neutrons, producing helium (He), which embrittles the grain boundary (GB) network. Here, it is shown that neutron-friendly and mechanically strong nano-phases with atomic-scale free volume can have low He-embedding energy (Formula presented.) and >10 at.% He-absorbing capacity, and can be especially advantageous for soaking up He on top of resisting radiation damage and creep, provided they have thermodynamic compatibility with the matrix phase, satisfactory equilibrium wetting angle, as well as a high enough melting point. The preliminary experimental demonstration proves that (Formula presented.) is a good ab initio predictor of He shielding potency in nano-heterophase materials, and thus, (Formula presented.) is used as a key feature for computational screening. In this context, a list of viable compounds expected to be good He-absorbing nano-phases is presented, taking into account (Formula presented.), the neutron absorption and activation cross-sections, the elastic moduli, melting temperature, the thermodynamic compatibility, and the equilbrium wetting angle of the nano-phases with the Fe matrix as an example.
KW - density functional theory calculations
KW - fusion structural materials
KW - high-throughput screening
UR - https://www.scopus.com/pages/publications/85139005921
UR - https://www.mendeley.com/catalogue/9346da28-0e0d-3d55-a3c4-41ebc0dd4a62/
U2 - 10.1002/advs.202203555
DO - 10.1002/advs.202203555
M3 - Article
C2 - 36180389
AN - SCOPUS:85139005921
SN - 2198-3844
VL - 9
SP - e2203555
JO - Advanced Science
JF - Advanced Science
IS - 32
M1 - 2203555
ER -