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pith:CQ47II7M

pith:2026:CQ47II7MHCQA5XDTVOVLSNMGV3
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Anisotropic Dopant and Strain Architectures in WS$_2$ Nanocrystals Driven by Growth Kinetics

Bruno R. Carvalho, Elizabeth Grace Houser, Felipe Menescal, Frederico B. Sousa, Gilmar Eugenio Marques, Helio Chacham, Igor Ferreira Curvelo, Leandro M. Malard, Marcio D. Teodoro, Matheus J. S. Matos, Mauricio Terrones, Mingzu Liu, Raphaela de Oliveira, Zhuohang Yu

Non-equilibrium growth kinetics produce anisotropic vanadium dopant distributions and localized strain in WS2 monolayers.

arxiv:2605.13577 v1 · 2026-05-13 · cond-mat.mtrl-sci · physics.optics

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3 Author claim open · sign in to claim
4 Citations open
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Claims

C1strongest claim

Non-equilibrium growth kinetics can be harnessed to define dopant-driven strain architectures in vanadium-doped WS2 monolayers, with an adsorption-growth-diffusion model quantitatively capturing the dopant segregation.

C2weakest assumption

The assumption that a single kinetic parameter in the adsorption-growth-diffusion model is sufficient to quantitatively capture the observed dopant segregation without additional fitting or post-hoc adjustments.

C3one line summary

Non-equilibrium growth kinetics produce anisotropic vanadium dopant distributions and associated localized tensile strain in WS2 monolayers.

References

72 extracted · 72 resolved · 0 Pith anchors

[1] , Carvalho , B.R 2016 · doi:10.1088/2053-1583/3/2/022002
[2] Rhodes , author S 2019 · doi:10.1038/s41563-019-0366-8
[3] , Fujisawa , K 2025 · doi:10.1063/5.0251288
[5] barticle Zhang , F. , Zheng , B. , Sebastian , A. , Olson , D.H. , Liu , M. , Fujisawa , K. , Pham , Y.T.H. , Jimenez , V.O. , Kalappattil , V. , Miao , L. , : Monolayer vanadium-doped tungsten disulf 2020 · doi:10.1002/advs.202001174
[6] barticle Pham , Y.T.H. , Liu , M. , Jimenez , V.O. , Yu , Z. , Kalappattil , V. , Zhang , F. , Wang , K. , Williams , T. , Terrones , M. , Phan , M.-H. : Tunable ferromagnetism and thermally induced s 2020 · doi:10.1002/adma.202003607
Receipt and verification
First computed 2026-05-18T02:44:23.283432Z
Builder pith-number-builder-2026-05-17-v1
Signature Pith Ed25519 (pith-v1-2026-05) · public key
Schema pith-number/v1.0

Canonical hash

1439f423ec38a00edc73abaab93586aee7c996e1c7e8e0ba4b1009f1ae8650d8

Aliases

arxiv: 2605.13577 · arxiv_version: 2605.13577v1 · doi: 10.48550/arxiv.2605.13577 · pith_short_12: CQ47II7MHCQA · pith_short_16: CQ47II7MHCQA5XDT · pith_short_8: CQ47II7M
Agent API
Verify this Pith Number yourself
curl -sH 'Accept: application/ld+json' https://pith.science/pith/CQ47II7MHCQA5XDTVOVLSNMGV3 \
  | jq -c '.canonical_record' \
  | python3 -c "import sys,json,hashlib; b=json.dumps(json.loads(sys.stdin.read()), sort_keys=True, separators=(',',':'), ensure_ascii=False).encode(); print(hashlib.sha256(b).hexdigest())"
# expect: 1439f423ec38a00edc73abaab93586aee7c996e1c7e8e0ba4b1009f1ae8650d8
Canonical record JSON
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    "license": "http://arxiv.org/licenses/nonexclusive-distrib/1.0/",
    "primary_cat": "cond-mat.mtrl-sci",
    "submitted_at": "2026-05-13T14:11:39Z",
    "title_canon_sha256": "254f985e5adca38a2a60e52afad279e292616f9bc4d00bb92649cb6392e6cbd3"
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