Colloid and Interface Science Communications

Papers
(The H4-Index of Colloid and Interface Science Communications is 31. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2022-01-01 to 2026-01-01.)
ArticleCitations
Preparation of high-solid-loading and highly dispersible ZrB2 slurry in non-aqueous solvent via surface functionalization of cationic/anionic polymers124
Emulsifier-free (meth)acrylic colloids stabilized by cationic monomer containing two charged moieties96
Wetting dynamics of a droplet impact on target-like chemically heterogeneous substrates: The determinations of contact angle92
Shape stabilization and laser triggered shape transformation of magnetic particle functionalized liquid metal motors82
Synthesis and characterization of enhanced hydrophobic polysilazane coatings with high transparency and durability70
E-beam induced micropattern generation and amorphization of L-cysteine-functionalized graphene oxide nano-composites66
Ammonia two-phase mechanically pumped loop for geostationary application: Non-condensable gases factor63
Selectivity oxidation of benzyl alcohol using mesoporous g-C3N4 catalysts prepared by hard template method62
Recent advances in engineering chitosan-based nanoplatforms in biotherapeutic multi-delivery for multi-targeted disease treatments: Promises and outlooks57
Fabrication and characterization of a myrrh hydrocolloid dressing for dermal wound healing55
Mechanism of multilayer formation on liquid marbles47
Microwave-assisted solvothermal synthesis of defective zirconium-organic framework as a recyclable nano-adsorbent with superior adsorption capacity for efficient removal of toxic organic dyes46
Synthesis and properties of sodium carboxylate silicone surfactant via thiol-ene “click” reaction43
Self-healing coating with the ability to mark damaged locations, based on electrospun photothermal fibers and AIE agents41
Tumor-targeted hybrid micelles enable ROS-responsive CO release and synergistic chemo–gas antitumor therapy39
Fabrication and evaluation of a plasmonic biosensor based on silica-coated gold nanorods for highly-sensitive detection of anti-Müllerian hormone39
Promoted catalytic activity of CO oxidation at low temperatures by tuning ZnO morphology for optimized CuO/ZnO catalysts38
Co3O4/carbon nanohybrids embedded in the fibrous scaffolds promote stem cell osteogenic differentiation via strengthening cell mechanotransduction37
Enhanced photocatalytic behavior of ZnO nanorods decorated with a Au, ZnWO4, and Au/ZnWO4 composite: Synthesis and characterization36
A multifunctional endothelial-mimetic surface: Synergistically combating thrombus formation by releasing nitric oxide, promoting fibrinolysis, and enhancing endothelialization36
Emulsifying properties of sugar-based surfactants prepared by chemoenzymatic synthesis35
Correlation of type II adsorption isotherms of water contaminants using modified BET equations35
Dual functional electrospun nanofiber membrane with ROS scavenging and revascularization ability for diabetic wound healing33
Anti-icing and weatherability study of superhydrophobic titanium metal matrix composites surface33
Tools for the quantification of the dynamic assembly of colloidal chains of ellipsoidal particles33
Structural, chemical and biological properties of SiO2-CaO-Er2O3 flexible ceramic nanofibers for biomedical applications33
Photocatalytic and antibacterial performance of β-cyclodextrin-TiO2 nanoparticles loading sorbic and benzoic acids32
Fe/ABTS/PVP nanocomplexes with dual GSH-depleting for photothermal-reinforced catalytic bacterial killing32
Synthesis of magnetic nano-NiFe2O4 with the assistance of ultrasound and its application for photocatalytic degradation of Titan Yellow: Kinetic and isotherm studies31
Influence of the chemically reduced graphene oxide interface on the antioxidant multienzyme properties of Prussian blue nanoparticles31
Strategies applied to modify structured and smooth surfaces: A step closer to reduce bacterial adhesion and biofilm formation31
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