MR. Lionel Talley Fogang
Technical Research Assistant
CIPR
lionelfogang@kfupm.edu.saA Zwitterionic Surfactant Bearing Unsaturated Tail for Enhanced Oil Recovery in High-Temperature High-Salinity Reservoirs
DOI: 10.1002/jsde.12024
Understanding viscosity reduction of a long-tail sulfobetaine viscoelastic surfactant by organic compounds
DOI: 10.1039/c7ra12538k
Improving Gas Sequestration by Surfactant-Alternating-Gas Injection: A Comparative Evaluation of the Surfactant Type and Concentration
DOI: 10.1002/jsde.12162
Effect of internal olefin on the properties of betaine-type zwitterionic surfactants for enhanced oil recovery
Impact of spacer and hydrophobic tail on interfacial and rheological properties of cationic amido-amine gemini surfactants for EOR application
DOI: 10.3139/113.110591
Synthesis and performance evaluation of betaine type zwitterionic surfactants containing different degrees of ethoxylation
Surface and thermal properties of synthesized cationic poly(ethylene oxide) gemini surfactants: The role of the spacer
DOI: 10.1039/c9ra06577f
Synthesis and physicochemical investigation of betaine type polyoxyethylene zwitterionic surfactants containing different ionic headgroups
Development of Polyoxyethylene Zwitterionic Surfactants for High-Salinity High-Temperature Reservoirs
DOI: 10.1002/jsde.12278
How a range of metal ions influence the interfacial tension of n-decane/carboxylic acid/water systems: The impact of concentration, molecular- and electronic structure
Effect of the number of ethylene oxide units on the properties of synthesized tailor-made cationic gemini surfactants for oilfield applications
Role of ionic headgroups on the thermal, rheological, and foaming properties of novel betaine-based polyoxyethylene zwitterionic surfactants for enhanced oil recovery
DOI: 10.3390/pr7120908
Oil/Water Interfacial Tension in the Presence of Novel Polyoxyethylene Cationic Gemini Surfactants: Impact of Spacer Length, Unsaturation, and Aromaticity
Real-time monitoring of oil-induced micellar transitions in viscoelastic surfactants by small-angle X-ray scattering
Viscosity-reducing agents (breakers) for viscoelastic surfactant gels for well stimulation
Development of Viscosified Acid-Surfactant Solutions for Oilfield Applications: Rheological Properties
DOI: 10.1115/1.4047605
Deducing the Relation between Viscosity and Oil-Induced Structural Changes of Viscoelastic Surfactants Using a Kinetic Approach