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Materials Science

D-Index
51
Citations
9357
World Ranking
9909
National Ranking
169

Overview

Ashish Agarwal is affiliated with Guru Jambheshwar University of Science and Technology in India. Their research focuses predominantly on materials science, with significant contributions in materials chemistry, electronic, optical and magnetic materials, ceramics and composites, electrical and electronic engineering, and biomedical engineering.

The scientist's core research areas include multiferroics and related materials, ferroelectric and piezoelectric materials, glass properties and applications, magnetic and transport properties of perovskites and related materials, luminescence properties of advanced materials, magnetic properties and synthesis of ferrites, and dielectric properties of ceramics.

Frequent publication venues for Agarwal include:

  • AIP conference proceedings
  • Ceramics International
  • Applied Physics A
  • Journal of Materials Science Materials in Electronics
  • Journal of Orthopaedic Case Reports

Recent papers authored by or associated with Agarwal reflect an emphasis on optical, dielectric, and magnetic properties of advanced glass and ceramic materials. Notable publications are:

  • "Tuneable colour flexibility in Dy3+&Eu3+ co-doped lithium fluoride bismuth borate glass system for solid state lighting applications" (2021), Journal of Non-Crystalline Solids
  • "Effect of Dysprosium and Samarium RE ion Co-doping on photoluminescence behaviour of novel alkali fluoride bismuth borate glasses: A white LED material" (2022), Optical Materials
  • "Effect of magnetic ion, Fe3+ on the structural and dielectric properties of Oxychloro Bismuth Borate Glasses" (2020), Solid State Sciences
  • "Detailed optical analysis of Dy3+ and Pr3+ co-doped alumino-borate glasses for visible lighting applications" (2023), Ceramics International
  • "Investigation of crystal structure, dielectric properties, impedance spectroscopy and magnetic properties of (1-x)BaTiO3 - (x)Ba0.9Ca0.1 Fe12O19 multiferroic composites" (2021), Ceramics International

Agarwal has collaborated frequently with several co-authors including Sujata Sanghi, Meenal Chauhan, Ekta Arya, Satish Khasa, and Shalu Kaushik. These collaborations span topics within materials science and related subfields, suggesting a strong network in research groups working on ceramics, composites, and advanced functional materials.

Best Publications

  • Targeted gold nanorod contrast agent for prostate cancer detection by photoacoustic imaging

    A. Agarwal;S. W. Huang;M. O’Donnell;K. C. Day

  • Gold nanorods 3D-supercrystals as surface enhanced Raman scattering spectroscopy substrates for the rapid detection of scrambled prions

    Ramón A. Alvarez-Puebla;Ashish Agarwal;Pramit Manna;Bishnu P. Khanal

  • Side-by-side and end-to-end gold nanorod assemblies for environmental toxin sensing.

    Libing Wang;Yingyue Zhu;Liguang Xu;Wei Chen;Wei Chen

  • Nanoparticle Superstructures Made by Polymerase Chain Reaction: Collective Interactions of Nanoparticles and a New Principle for Chiral Materials

    Wei Chen;Ai Bian;Ashish Agarwal;Liqiang Liu

  • Integration of Conductivity, Transparency, and Mechanical Strength into Highly Homogeneous Layer-by-Layer Composites of Single-Walled Carbon Nanotubes for Optoelectronics

    Bong Sup Shim;Zhiyong Tang;Matthew P. Morabito;Ashish Agarwal

  • Photoacoustic imaging of early inflammatory response using gold nanorods

    Kang Kim;Sheng Wen Huang;Shai Ashkenazi;Matthew O'Donnell

  • Dielectric relaxation, conductivity behavior and magnetic properties of Mg substituted Zn–Li ferrites

    Navneet Singh;Ashish Agarwal;Sujata Sanghi

  • Judd–Ofelt parameters and radiative properties of Sm3+ ions doped zinc bismuth borate glasses

    A. Agarwal;I. Pal;S. Sanghi;M.P. Aggarwal

  • Effect of Bi2O3 content on the optical band gap, density and electrical conductivity of MO·Bi2O3·B2O3 (M = Ba, Sr) glasses

    S. Sindhu;S. Sanghi;A. Agarwal;V.P. Seth

  • Controllable side-by-side and end-to-end assembly of Au nanorods by lyotropic chromonic materials.

    Heung Shik Park;Ashish Agarwal;Nicholas A. Kotov;Oleg D. Lavrentovich

  • Nanostructured thin films made by dewetting method of layer-by-layer assembly.

    Bong Sup Shim;Paul Podsiadlo;Daniel G. Lilly;Ashish Agarwal

  • Rietveld analysis, dielectric and magnetic properties of Sr and Ti codoped BiFeO3 multiferroic

    Reetu;Ashish Agarwal;Sujata Sanghi;Ashima

  • Influence of Bi2O3 on thermal, structural and dielectric properties of lithium zinc bismuth borate glasses

    Saroj Rani;Sujata Sanghi;Neetu Ahlawat;Ashish Agarwal

  • Single particle plasmon spectroscopy of silver nanowires and gold nanorods.

    Moussa N'gom;Jan Ringnalda;Jan Ringnalda;John F. Mansfield;Ashish Agarwal

  • Photoacoustic tomography of joints aided by an Etanercept-conjugated gold nanoparticle contrast agent-an ex vivo preliminary rat study

    David L Chamberland;Ashish Agarwal;Nicholas Kotov;J Brian Fowlkes

  • The role of V2O5 in the modification of structural, optical and electrical properties of vanadium barium borate glasses

    S. Sindhu;S. Sanghi;A. Agarwal;Sonam

  • Can nature's design be improved upon? High strength, transparent nacre-like nanocomposites with double network of sacrificial cross links

    Paul Podsiadlo;Amit K. Kaushik;Bong Sup Shim;Ashish Agarwal

  • Rietveld refinement, electrical properties and magnetic characteristics of Ca–Sr substituted barium hexaferrites

    Ashima;Sujata Sanghi;Ashish Agarwal;Reetu

  • Dielectric loss, conductivity relaxation process and magnetic properties of Mg substituted Ni-Cu ferrites

    Navneet Singh;Ashish Agarwal;Sujata Sanghi;Satish Khasa

  • Electron-beam mapping of plasmon resonances in electromagnetically interacting gold nanorods

    Moussa N'Gom;Shuzhou Li;George C Schatz;Rolf Erni

  • Synthesis, microstructure, dielectric and magnetic properties of Cu substituted Ni-Li ferrites

    Navneet Singh;Ashish Agarwal;Sujata Sanghi;Paramjeet Singh

Frequent Co-Authors

R.K. Kotnala
R.K. Kotnala NABL India
Jyoti Shah
Jyoti Shah Council of Scientific and Industrial Research

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