Fatema Tarannum Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Post Doctoral Fellow
postdoc
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Fatema Tarannum's research investigates methods for enhancing the thermal and electrical conductivity of polymer-graphene nanocomposites. Her work includes studies on thermally expanded graphite polyetherimide composites, examining the impact of solvent choice and functionalization techniques on material properties. Tarannum has explored the role of chemically edge-carboxylated graphene in improving thermal conductivity and compared the effectiveness of edge versus basal plane functionalization. She has also conducted research on the length dependence of thermal conductivity in zinc selenide and zinc telluride using both first principles calculations and experimental techniques. Additionally, her recent work has focused on stimuli-responsive phosphate hydrogels, investigating their swelling behavior, mechanical properties, and potential applications in expansion microscopy.
Metrics
- h-index: 8
- Publications: 36
- Citations: 288
Selected Publications
-
Magnetically recoverable nano-adsorbents for dual removal of organic dyes and heavy metals from aqueous media (2026)
-
Aminated Phenolated Lignin for Effective Anionic Dye Removal for Water Remediation (2025)
-
Synthesis and Characterization of Temperature- and pH-Responsive PIA-b-PNIPAM@Fe3O4 Nanocomposites (2025)
-
Reactive Dye Wash-Off Processing of Cotton Fabrics Using Polymer Dye Transfer Inhibitors for Sustainable Dyeing (2024)
-
Stimuli-Responsive Phosphate Hydrogel: A Study on Swelling Behavior, Mechanical Properties, and Application in Expansion Microscopy (2024)
-
Synthesis of phosphate hydrogels with excellent swelling behavior prepared by ascorbic acid -mediated ARGET ATRP (2024)
Collaboration Network
Top Collaborators
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
Showing 5 of 20 shared publications
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
Showing 5 of 16 shared publications
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
Showing 5 of 16 shared publications
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Hydrogen-peroxide intercalated expanded graphite facilitates large enhancement in thermal conductivity of polyetherimide/graphite nanocomposites
Showing 5 of 14 shared publications
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- Stimuli-Responsive Phosphate Hydrogel: A Study on Swelling Behavior, Mechanical Properties, and Application in Expansion Microscopy
- Synthesis of phosphate hydrogels with excellent swelling behavior prepared by ascorbic acid -mediated ARGET ATRP
- Reactive Dye Wash-Off Processing of Cotton Fabrics Using Polymer Dye Transfer Inhibitors for Sustainable Dyeing
- Hydrogen-peroxide intercalated expanded graphite facilitates large enhancement in thermal conductivity of polyetherimide/graphite nanocomposites
Showing 5 of 12 shared publications
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- Thermally expanded graphite polyetherimide composite with superior electrical and thermal conductivity
- Length dependence thermal conductivity of zinc selenide (ZnSe) and zinc telluride (ZnTe) – a combined first principles and frequency domain thermoreflectance (FDTR) study
Showing 5 of 11 shared publications
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Superior Enhancement in Thermal Conductivity of Epoxy/Graphene Nanocomposites Through Use of Dimethylformamide (Dmf) Relative to Acetone as Solvent
- Hydrogen-Peroxide Intercalated Expanded Graphite Facilitates Large Enhancement in Thermal Conductivity of Polyethermide/Graphite Nanocomposites
- Hydrogen-Peroxide Intercalated Expanded Graphite Facilitates Large Enhancement in Thermal Conductivity of Polyetherimide/Graphite Nanocomposites
- The superior effect of edge functionalization relative to basal plane functionalization of graphene in enhancing the thermal conductivity of polymer–graphene nanocomposites – a combined molecular dynamics and Green's functions study
- First principles investigation of high thermal conductivity in hexagonal boron phosphide
- Superior effect of edge relative to basal plane functionalization of graphene in enhancing polymer-graphene nanocomposite thermal conductivity-A combined molecular dynamics and Greens functions study
- Chemically Edge-Carboxylated Graphene Enhances the Thermal Conductivity of Polyetherimide–Graphene Nanocomposites
- Stimuli-Responsive Phosphate Hydrogel: A Study on Swelling Behavior, Mechanical Properties, and Application in Expansion Microscopy
- Length dependence thermal conductivity of zinc selenide (ZnSe) and zinc telluride (ZnTe) – a combined first principles and frequency domain thermoreflectance (FDTR) study
- Length Dependence thermal conductivity of Zinc-Selenide (ZnSe) and Zinc Telluride (ZnTe)- A combined first principles and Frequency Domain Thermoreflectance (FDTR) study
- Length dependence thermal conductivity of zinc selenide (ZnSe) and zinc telluride (ZnTe) – a combined first principles and frequency domain thermoreflectance (FDTR) study
- Length Dependence thermal conductivity of Zinc-Selenide (ZnSe) and Zinc Telluride (ZnTe)- A combined first principles and Frequency Domain Thermoreflectance (FDTR) study
- Superior enhancement in thermal conductivity of epoxy/graphene nanocomposites through use of dimethylformamide (DMF) relative to acetone as solvent
- Superior Enhancement in Thermal Conductivity of Epoxy/Graphene Nanocomposites Through Use of Dimethylformamide (Dmf) Relative to Acetone as Solvent
- Hydrogen-Peroxide Intercalated Expanded Graphite Facilitates Large Enhancement in Thermal Conductivity of Polyethermide/Graphite Nanocomposites
- Hydrogen-Peroxide Intercalated Expanded Graphite Facilitates Large Enhancement in Thermal Conductivity of Polyetherimide/Graphite Nanocomposites
- Stimuli-Responsive Phosphate Hydrogel: A Study on Swelling Behavior, Mechanical Properties, and Application in Expansion Microscopy
- Synthesis of phosphate hydrogels with excellent swelling behavior prepared by ascorbic acid -mediated ARGET ATRP
- Stimuli-Responsive Phosphate Hydrogel: A Study on Swelling Behavior, Mechanical Properties, and Application in Expansion Microscopy
- Synthesis of phosphate hydrogels with excellent swelling behavior prepared by ascorbic acid -mediated ARGET ATRP
Similar Researchers
Based on overlapping research topics