Browse by UCL people
Group by: Type | Date
Number of items: 16.
Article
Bui, T;
Phan, A;
Cole, DR;
Striolo, A;
(2017)
Transport Mechanism of Guest Methane in Water-Filled Nano-Pores.
The Journal of Physical Chemistry C
, 121
(29)
pp. 15675-15686.
10.1021/acs.jpcc.7b02713.
|
Bui, T;
Phan, A;
Monteiro, D;
Lan, Q;
Ceglio, M;
Acosta, E;
Krishnamurthy, P;
(2017)
Evidence of Structure-Performance Relation for Surfactants used as Anti-Agglomerants for Hydrates Management.
Langmuir
, 33
(9)
pp. 2263-2274.
10.1021/acs.langmuir.6b04334.
|
Fan, D;
Phan, A;
Striolo, A;
(2020)
Accurate permeability prediction in tight gas rocks via lattice Boltzmann simulations with an improved boundary condition.
Journal of Natural Gas Science and Engineering
, 73
, Article 103049. 10.1016/j.jngse.2019.103049.
|
Hu, Y;
Devegowda, D;
Striolo, A;
Phan, A;
Ho, TA;
Civan, F;
Sigal, R;
(2015)
The dynamics of hydraulic fracture water confined in nano-pores in shale reservoirs.
Journal of Unconventional Oil and Gas Resources
, 9
pp. 31-39.
10.1016/j.juogr.2014.11.004.
|
Phan, A;
Fan, D;
Striolo, A;
(2020)
Fluid transport through heterogeneous pore matrices: Multiscale simulation approaches.
Physics of Fluids
, 32
(10)
, Article 101301. 10.1063/5.0022481.
|
Phan, A;
Stamatakis, M;
Koh, CA;
Striolo, A;
(2021)
Correlating Antiagglomerant Performance with Gas Hydrate Cohesion.
ACS Applied Materials & Interfaces
, 13
(33)
pp. 40002-40012.
10.1021/acsami.1c06309.
|
Phan, A;
Striolo, A;
(2021)
Aqueous films on pore surfaces mediate adsorption and transport of gases through crowded nanopores.
The Journal of Chemical Physics
, 154
(9)
, Article 094706. 10.1063/5.0039973.
|
Phan, A;
Bui, T;
Acosta, E;
Krishnamurthy, P;
Striolo, A;
(2016)
Molecular mechanisms responsible for hydrate anti-agglomerant performance.
Physical Chemistry Chemical Physics
, 18
pp. 24859-24871.
10.1039/c6cp03296f.
|
Phan, A;
Cole, DR;
Striolo, A;
(2016)
Factors governing the behaviour of aqueous methane in narrow pores.
Philosophical Transactions of the Royal Society A: Mathematical Physical and Engineering Sciences
, 374
(2060)
, Article 20150019. 10.1098/rsta.2015.0019.
|
Phan, A;
Cole, DR;
Weiss, RG;
Dzubiella, J;
Striolo, A;
(2016)
Confined Water Determines Transport Properties of Guest Molecules in Narrow Pores.
ACS Nano
, 10
(8)
pp. 7646-7656.
10.1021/acsnano.6b02942.
|
Phan, A;
Schlösser, H;
Striolo, A;
(2021)
Molecular Mechanisms by which Tetrahydrofuran Affects CO₂ Hydrate Growth: Implications for Carbon Storage.
Chemical Engineering Journal
, 418
, Article 129423. 10.1016/j.cej.2021.129423.
|
Phan, A;
Striolo, A;
(2020)
Evidence of Facilitated Transport in Crowded Nano-Pores.
The Journal of Physical Chemistry Letters
, 11
(5)
pp. 1814-1821.
10.1021/acs.jpclett.9b03751.
|
Phan, A;
Striolo, A;
(2019)
Methane transport through hierarchical silica micro-mesoporous materials: From non-equilibrium atomistic simulations to phenomenological correlations.
Microporous and Mesoporous Materials
, 288
, Article 109559. 10.1016/j.micromeso.2019.06.021.
|
Stoner, HM;
Phan, A;
Striolo, A;
Koh, CA;
(2021)
Water Wettability Coupled with Film Growth on Realistic Cyclopentane Hydrate Surfaces.
Langmuir
, 37
(42)
pp. 12447-12456.
10.1021/acs.langmuir.1c02136.
|
Striolo, A;
Phan, A;
Walsh, MR;
(2019)
Molecular properties of interfaces relevant for clathrate hydrate agglomeration.
Current Opinion in Chemical Engineering
, 25
pp. 57-66.
10.1016/j.coche.2019.08.006.
|
Thesis
Phan, ATV;
(2016)
Hydrogen-Bonding Liquids at Mineral Surfaces: From Fundamentals to Applications.
Doctoral thesis , UCL (University College London).
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