PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 3, 2026Journal of Nanoparticle Research1 citations

Synthesis, characterizations, dielectric, and thermal conductivity analysis of acid and amine functionalized graphene oxide nanostructures

View Full Paper
DPDevendra PatelSMS. P. Mahapatra

Key Points

  • To examine how surface functionalization affects the dielectric and thermal properties of graphene oxide.
  • Synthesis of graphene oxide, acid-functionalized graphene oxide, and amine-functionalized graphene oxide.
  • Characterization through structural and spectroscopic analyses.
  • Dielectric spectroscopy conducted over wide frequency and temperature ranges.
  • Thermal conduction measurements of nanofluids with varying concentrations.
  • Acid and amine functionalization resulted in enhanced dielectric properties and thermal conductivity.
  • N-GO exhibited the highest capacitance and dielectric permittivity at elevated temperatures.
  • Thermal conductivity of nanofluids increased significantly with nanoparticle concentration and temperature.

Abstract

Graphene oxide (GO) and its surface-functionalized derivatives provide a promising platform for tailoring dielectric relaxation and thermal transport through chemical modification. However, a unified understanding of how surface chemistry governs these properties remains limited. In this work, GO, acid-functionalized GO (A-GO), and amine-functionalized GO (N-GO) were synthesized to systematically elucidate the influence of surface functionalization on frequency and temperature-dependent dielectric properties and thermal behavior. Structural and spectroscopic analyses confirmed successful incorporation of –COOH and –NH 2 groups, accompanied by reduced interlayer spacing, modified defect density, and distinct variations in nanoscale sheet morphology and lateral size distribution upon functionalization. Dielectric spectroscopy performed over a frequency range of 10 –2 –10 5 Hz and a temperature range of 25–100 °C revealed thermally activated, non-Debye relaxation dominated by interfacial polarization, with N-GO exhibiting significantly enhanced capacitance (~ 10 –3 F), dielectric permittivity (~ 10 9 ), and AC conductivity (~ 10 –1 S m −1 ) at 100 °C compared with GO and A-GO. Dielectric modulus analysis and impedance spectroscopy were additionally employed to further assess relaxation behavior and charge transport characteristics of the functionalized GO systems. Thermal conduction measurements of corresponding nanofluids demonstrated pronounced enhancement in thermal conductivity and diffusivity with increasing temperature and nanoparticle concentration, reaching up to ~ 71% thermal conductivity enhancement for N-GO nanofluids relative to the base fluid. This work provides the first comprehensive and systematic experimental investigation integrating dielectric relaxation analysis and thermal transport evaluation in acid and amine functionalized GO, offering new insights into the role of surface chemistry in governing multifunctional material performance.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Patel et al. (2026) studied this question.

synapsesocial.com/papers/6981456cf607237d8b54d47fhttps://doi.org/10.1007/s11051-026-06558-5
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Frequency-dependent dielectric, electric modulus, and ac conductivity features of Au/n-Si Schottky diodes (SDs) with PVC and (PVC:Graphite/Graphene-Oxide) interlayer2024 · 24 citations
  2. 2Dielectric bi-layer model for electrochemical impedance spectroscopy characterisation of oxide film2024 · 46 citations
  3. 3Thermal conductivity of different materials nanofluids Nanofluids of MXenes, metal organic frameworks, and other Nanostructured materials in heat transfer applications: Review2024 · 40 citations
  4. 4Broadband Complex Permittivity and Electric Modulus Spectra for Dielectric Materials Research2022 · 82 citations
  5. 5Impedance studies of Sr modified BaZr0.05Ti0.95O3 ceramics2004 · 255 citations