Gas separations using nanoporous atomically thin membranes: recent theoretical, simulation, and experimental advances

Z Yuan, G He, SX Li, RP Misra, MS Strano… - Advanced …, 2022 - Wiley Online Library
Porous graphene and other atomically thin 2D materials are regarded as highly promising
membrane materials for high‐performance gas separations due to their atomic thickness …

Advances in surface modification and functionalization for tailoring the characteristics of thin films and membranes via chemical vapor deposition techniques

AH Mostafavi, AK Mishra, F Gallucci… - Journal of Applied …, 2023 - Wiley Online Library
Advanced materials are among the prime drivers for technological revolutions and
transformation in quality of lives. Over time, several modification techniques have emerged …

Direct chemical vapor deposition synthesis of porous single‐layer graphene membranes with high gas permeances and selectivities

Z Yuan, G He, S Faucher, M Kuehne, SX Li… - Advanced …, 2021 - Wiley Online Library
Single‐layer graphene containing molecular‐sized in‐plane pores is regarded as a
promising membrane material for high‐performance gas separations due to its atomic …

Gas separation membranes with atom-thick nanopores: the potential of nanoporous single-layer graphene

LF Villalobos, DJ Babu, KJ Hsu… - Accounts of Materials …, 2022 - ACS Publications
Conspectus Gas separation is one of the most important industrial processes and is poised
to take a larger role in the transition to renewable energy, eg, carbon capture and hydrogen …

Predicting gas separation through graphene nanopore ensembles with realistic pore size distributions

Z Yuan, A Govind Rajan, G He, RP Misra, MS Strano… - ACS …, 2021 - ACS Publications
The development of nanoporous single-layer graphene membranes for gas separation has
prompted increasing theoretical investigations of gas transport through graphene …

Graphene-based Membranes for H2 Separation: Recent Progress and Future Perspective

CY Chuah, J Lee, TH Bae - Membranes, 2020 - mdpi.com
Hydrogen (H2) is an industrial gas that has showcased its importance in several well-known
processes such as ammonia, methanol and steel productions, as well as in petrochemical …

Multipulsed millisecond ozone gasification for predictable tuning of nucleation and nucleation-decoupled nanopore expansion in graphene for carbon capture

KJ Hsu, LF Villalobos, S Huang, HY Chi… - ACS …, 2021 - ACS Publications
Predictable and tunable etching of angstrom-scale nanopores in single-layer graphene
(SLG) can allow one to realize high-performance gas separation even from similar-sized …

[HTML][HTML] Oxygen enrichment of air: Performance guidelines for membranes based on techno-economic assessment

M Micari, KV Agrawal - Journal of Membrane Science, 2022 - Elsevier
The use of oxygen-enriched air (OEA) is an important strategy for reducing process cost and
CO 2 emissions in several industrial processes. Membrane-based processes, attributing to …

Bottom-up synthesis of graphene films hosting atom-thick molecular-sieving apertures

LF Villalobos, C Van Goethem… - Proceedings of the …, 2021 - National Acad Sciences
Incorporation of a high density of molecular-sieving nanopores in the graphene lattice by the
bottom-up synthesis is highly attractive for high-performance membranes. Herein, we …

Chemical vapor-deposited graphene on ultraflat copper foils for van der Waals hetero-assembly

F Pizzocchero, BS Jessen, L Gammelgaard… - ACS …, 2022 - ACS Publications
The purity and morphology of the copper surface is important for the synthesis of high-
quality, large-grained graphene by chemical vapor deposition. We find that atomically …