D-Index & Metrics Best Publications

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Materials Science D-index 50 Citations 7,440 156 World Ranking 7154 National Ranking 1915

Overview

What is he best known for?

The fields of study he is best known for:

  • Semiconductor
  • Condensed matter physics
  • Composite material

His primary areas of investigation include Ferroelectricity, Thin film, Condensed matter physics, Capacitor and Polarization. Bruce A. Tuttle combines subjects such as Polarization, Nanotechnology, Perovskite, Analytical chemistry and Metallurgy with his study of Ferroelectricity. In the field of Thin film, his study on Sputter deposition overlaps with subjects such as Trapping.

His work in the fields of Crystallographic defect and Relaxation overlaps with other areas such as Order and Hydrostatic pressure. His studies in Capacitor integrate themes in fields like Electronics, Electrode and Dopant. His Polarization study combines topics from a wide range of disciplines, such as Biasing and Annealing.

His most cited work include:

  • Electronic domain pinning in Pb(Zr,Ti)O3 thin films and its role in fatigue (289 citations)
  • Photoinduced hysteresis changes and optical storage in (Pb,La)(Zr,Ti)O3 thin films and ceramics (242 citations)
  • Oxygen Vacancy Motion in Perovskite Oxides (236 citations)

What are the main themes of his work throughout his whole career to date?

Bruce A. Tuttle mostly deals with Thin film, Ferroelectricity, Composite material, Analytical chemistry and Optoelectronics. His biological study spans a wide range of topics, including Annealing, Capacitor, Perovskite, Mineralogy and Electrode. His research in Mineralogy intersects with topics in Lead zirconate titanate and Grain size.

The study incorporates disciplines such as Polarization, Polarization and Condensed matter physics in addition to Ferroelectricity. Bruce A. Tuttle has included themes like Space charge, Elementary charge and Voltage in his Condensed matter physics study. His Analytical chemistry study incorporates themes from Crystallization, Amorphous solid, X-ray crystallography, Diffraction and Electron paramagnetic resonance.

He most often published in these fields:

  • Thin film (43.71%)
  • Ferroelectricity (40.72%)
  • Composite material (19.76%)

What were the highlights of his more recent work (between 2005-2011)?

  • Thin film (43.71%)
  • Capacitor (18.56%)
  • Optoelectronics (19.16%)

In recent papers he was focusing on the following fields of study:

Thin film, Capacitor, Optoelectronics, Nanotechnology and Dielectric are his primary areas of study. His Thin film research incorporates elements of Composite material, Texture, Fluorite, Perovskite and Analytical chemistry. His Perovskite research includes elements of Inorganic chemistry and Alkaline earth metal.

Bruce A. Tuttle focuses mostly in the field of Capacitor, narrowing it down to topics relating to Capacitance and, in certain cases, Microstructure and Permittivity. His Nanotechnology study integrates concerns from other disciplines, such as Acoustics, Ferroelectricity and Electronics. His studies deal with areas such as Nanosensor and Miniaturization as well as Ferroelectricity.

Between 2005 and 2011, his most popular works were:

  • Processing Technologies for High Permittivity Thin Films in Capacitor Applications. (92 citations)
  • Reversibility of the Perovskite‐to‐Fluorite Phase Transformation in Lead‐Based Thin and Ultrathin Films (47 citations)
  • Fabrication of Perovskite-Based High-Value Integrated Capacitors by Chemical Solution Deposition (46 citations)

In his most recent research, the most cited papers focused on:

  • Semiconductor
  • Composite material
  • Aluminium

His primary areas of study are Thin film, Dielectric, Capacitor, Optoelectronics and Perovskite. His work deals with themes such as Permittivity, Mineralogy and Analytical chemistry, which intersect with Thin film. His Analytical chemistry study combines topics in areas such as Scanning transmission electron microscopy and Crystallization.

His Capacitor research focuses on Capacitance and how it relates to Ferroelectricity. His work carried out in the field of Optoelectronics brings together such families of science as Annular array and Film capacitor. Bruce A. Tuttle usually deals with Perovskite and limits it to topics linked to Fluorite and Ceramic, Chemical engineering, Cation distribution and Piezoelectricity.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Electronic domain pinning in Pb(Zr,Ti)O3 thin films and its role in fatigue

W. L. Warren;D. Dimos;B. A. Tuttle;R. D. Nasby.
Applied Physics Letters (1994)

390 Citations

Photoinduced hysteresis changes and optical storage in (Pb,La)(Zr,Ti)O3 thin films and ceramics

D. Dimos;W. L. Warren;M. B. Sinclair;B. A. Tuttle.
Journal of Applied Physics (1994)

349 Citations

Oxygen Vacancy Motion in Perovskite Oxides

William L. Warren;Karel Vanheusden;Duane Dimos;Gordon E. Pike.
Journal of the American Ceramic Society (1996)

341 Citations

Voltage offsets in (Pb,La)(Zr,Ti)O3 thin films

G. E. Pike;W. L. Warren;D. Dimos;B. A. Tuttle.
Applied Physics Letters (1995)

323 Citations

Polarization suppression in Pb(Zr,Ti)O3 thin films

W. L. Warren;D. Dimos;B. A. Tuttle;G. E. Pike.
Journal of Applied Physics (1995)

268 Citations

Microstructure of Solution‐Processed Lead Zirconate Titanate (PZT) Thin Films

Altaf H. Carim;Bruce A. Tuttle;Daniel H. Doughty;Sheri L. Martinez.
Journal of the American Ceramic Society (1991)

241 Citations

Qualitative model for the fatigue‐free behavior of SrBi2Ta2O9

H. N. Al‐Shareef;D. Dimos;T. J. Boyle;W. L. Warren.
Applied Physics Letters (1996)

241 Citations

Voltage shifts and imprint in ferroelectric capacitors

W. L. Warren;D. Dimos;G. E. Pike;B. A. Tuttle.
Applied Physics Letters (1995)

227 Citations

Photoinduced changes in the fatigue behavior of SrBi2Ta2O9 and Pb(Zr,Ti)O3 thin films

D. Dimos;H. N. Al‐Shareef;W. L. Warren;B. A. Tuttle.
Journal of Applied Physics (1996)

218 Citations

Defect-dipole alignment and tetragonal strain in ferroelectrics

W. L. Warren;G. E. Pike;K. Vanheusden;D. Dimos.
Journal of Applied Physics (1996)

208 Citations

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