Journal of Dispersion Science and Technology
Basic Information
Journal of Dispersion Science and Technology is an international journal with quick turnaround time, publishing high quality articles covering fundamental and applied aspects related to multiphase systems, including dispersions, emulsions and foams since its first issue in 1980. A subset of these topics includes natural–derived colloids and high surface area systems including hydrogels, aerogels and organogels, as well as the following: vesicles, microemulsions, liquid crystals, particle suspensions, sol-gel processes, new surfactants, polymers and indigenous stabilizers; surfactant and polymer association; phase equilibria in surfactant-oil-water systems; surfactant and polymer films, monolayers and interfacial phenomena; adsorption and desorption; stability and destabilization of dispersions and colloidal templates. Papers on applications covering chemicals (surfactants, polymers, stabilizers, inhibitors), food, pharmaceuticals, forest products, agriculture, nanotechnology, and soft condensed matter are welcome. All submitted manuscripts are subject to initial appraisal by the Editor, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees. Submission is online via ScholarOne Manuscripts, providing an expedited but thorough review and decision process. Publication office: Taylor & Francis, Inc., 530 Walnut Street, Suite 850, Philadelphia, PA 19106.
CiteScore
Subject | Rank | Percentile |
---|---|---|
Materials ScienceSurfaces, Coatings and Films |
49 / 132 | 63% |
Journal Statistics
Submission Information
Submission Website:
https://rp.tandfonline.com/submission/create?journalCode=LDISRelated Articles
Selective production of monocyclic aromatic hydrocarbons from ex situ catalytic fast pyrolysis of pine over the HZSM-5 catalyst with calcium formate as a hydrogen source
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DOI: 10.1039/C9SE00605B
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Water-soluble pH-switchable cobalt complexes for aqueous symmetric redox flow batteries
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Electrocatalytic cleavage of lignin model dimers using ruthenium supported on activated carbon cloth
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