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L. Mogg

4 papers here

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • first author1
  • middle author2

Across the 3 of 4 papers where every author was matched, so the position is known.

fields
  • cond-mat.mtrl-sci2
  • cond-mat.mes-hall1
  • physics.app-ph1

identity via Semantic Scholar / OpenAlex

activity
20192021
most citedProton and Li-Ion Permeation through Graphene with Eight-Atom-Ring Defects

97 citations · 188 across the 2 of their papers we have counts for

collaborators

4 papers

cond-mat.mtrl-sci2021★ 91 cited

Ion exchange in atomically thin clays and micas

Yi-Chao Zou, Lucas Mogg, Nick Clark +13

Clays and micas are receiving attention as materials that, in their atomically thin form, could allow for novel proton conductive, ion selective, osmotic power generation, or solve…

cond-mat.mtrl-sci2020★ 97 cited

Proton and Li-Ion Permeation through Graphene with Eight-Atom-Ring Defects

Eoin Griffin, Lucas Mogg, Guang-Ping Hao +21

Defect-free graphene is impermeable to gases and liquids but highly permeable to thermal protons. Atomic-scale defects such as vacancies, grain boundaries and Stone-Wales defects a…

physics.app-ph2019

Perfect proton selectivity in ion transport through two-dimensional crystals

L. Mogg, S. Zhang, G. -P. Hao +6

Defect-free monolayers of graphene and hexagonal boron nitride were previously shown to be surprisingly permeable to thermal protons, despite being completely impenetrable to all g…

cond-mat.mes-hall2019

Atomically-thin micas as proton conducting membranes

L. Mogg, G. -P. Hao, S. Zhang +6

Monolayers of graphene and hexagonal boron nitride (hBN) are highly permeable to thermal protons. For thicker two-dimensional (2D) materials, proton conductivity diminishes exponen…

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Not affiliated with arXiv. Researcher data from Semantic Scholar (ODC-BY) and OpenAlex.