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Total result(s) found: 24
  • U. Bhansali, M.A. Khan, Dongkyu Cha, Ruipeng Li, Long Chen, Aram Amassian, Ihab N. Odeh, and H.N. Alshareef, “Metal-free, single-polymer device exhibits resistive memory effect”
  • ACS Nano, 20137 (12), pp 10518–10524
PEDOT:PSS; resistive memory; flexible substrates; polymer electrodes; metal filament; solution process
  • S.R.S Kumar, P. Nayak, MN Hedhili, and H.N. Alshareef, “In situ growth of p and n-type graphene thin films and diodes by pulsed laser deposition”
  • Appl. Phys. Lett. 103, 192109 (2013)
graphene thin films, pulsed laser deposition
  • Nuha A. Alhebshi, R.B. Rakhi, and H.N. Alshareef, “Nanostructured Conformal Coatings of Ni(OH)2 on Carbon Fibers as Electrodes for Efficient Supercapacitors”
  • J. Mater. Chem. A, 2013,1, 14897-14903
Ni(OH)2, Supercapacitors
  • J.A. Caraveo-Frescas and H.N. Alshareef, “Transparent p-type Oxide Nanowires with Unprecedented Hole Mobility Among Oxide Semiconductors”
  • Appl. Phys. Lett. 103, 222103 (2013)
p-type Oxide Nanowires, Hole Mobility
  • H.A. Al-Jawhari, J.A. Caraveo-Frescas, and H.N. Alshareef, “P-type Cu2O/SnO bilayer thin film transistors processed at low temperatures”
  • ACS Appl. Mater. Interfaces, 20135 (19), pp 9615–9619
thin film transistor; tin monoxide; cuprous oxide; bilayer channel; oxide semiconductors
  • J.A. Caraveo, P. Nayak, D. Granato, U. Schwingenschlogl, and H.N. Alshareef, “Record Mobility in Fully Transparent p-type Tin Monoxide Films and Devices Processed by Phase Engineering”
  • ACS Nano, 20137 (6), pp 5160–5167
p-type oxide; tin monoxide; thin-film transistors
  • S.R.S. Kumar, Abeer Barasheed, and H.N. Alshareef, “High Temperature Thermoelectric Properties of Nb-doped and Oxygen Vacancy-doped SrTiO3”
  • ACS Appl. Mater. Interfaces, 20135 (15), pp 7268–7273
thermoelectrics; oxide semiconductors; transport properties; pulsed laser deposition; oxygen vacancies
  • Yingbang Yao, Bei Zhang, Long Chen, Yang Yang, Zhihong Wang, H. N. Alshareef, and Xixiang Zhang, “Polarization-tuned diode behaviour in multiferroic BiFeO3 thin films”
  • ​J. Phys. D: Appl. Phys. 46 (2013) 055304
BiFeO3 thin films, Diode behaviour
  • Wei Chen, R.B. Rakhi, and H.N. Alshareef, “Morphology-Dependent Enhancement of Pseudocapacitance of Tunable Template-Guided Polyaniline Nanostructures”
  • J. Phys. Chem. C, 2013117 (29), pp 15009–15019
Morphology-Dependent, Polyaniline
  • B. Amin, N. Singh, T. M. Tritt, H.N. Alshareef, and U. Schwingenschlögl, “Major enhancement of the thermoelectric performance in Pr/Nb-doped SrTiO3 under strain”
  • Appl. Phys. Lett. 103, 031907 (2013)
Thermoelectric, SrTiO3, Strain
  • Pradipta K. Nayak, M. N. Hedhili, Dongkyu Cha, and H.N. Alshareef, “High performance In2O3 thin film transistors using chemically-derived aluminum oxide dielectric”
  • Appl. Phys. Lett. 103, 033518 (2013)
In2O3, Thin film transistors
  • D.B. Granato, J. A. Caraveo-Frescas, H.N. Alshareef, and U. Schwingenschlogl, “Enhancement of the p-type mobility in tin monoxide by native defects”
  • Appl. Phys. Lett. 102, 212105 (2013)
Tin monoxide, Native defects
  • A. Elshurafa, K. N. Salama, M. Almadhoun, and H.N. Alshareef, “Microscale Electrostatic Fractional Capacitors using Reduced Graphene Oxide Percolated Polymer Composites”
  • Appl. Phys. Lett. 102, 232901 (2013)
Reduced Graphene Oxide, Composites
  • A. Barasheed, S.R. Sarath Kumar, and H.N. Alshareef, “Temperature dependent thermoelectric properties of zinc oxide and gallium-doped zinc oxide thin films prepared by Sol-Gel processing”
  • J. Mater. Chem. C, 2013,1, 4122-4127​
Zinc oxide, Gallium-doped zinc oxide, Sol-Gel processing
  • P. Nayak, M.N. Hedhili, Dongkyu Cha, and H.N. Alshareef, “Impact of soft-annealing on the performance of solution-processed amorphous zinc tin oxide thin film transistors”
  • ACS Appl. Mater. Interfaces20135 (9), pp 3587–3590
thin film transistor; field-effect; amorphous oxide semiconductor; zinc tin oxide; soft annealing; solution-process
  • Wei Chen, R.B. Rakhi, and H.N. Alshareef, “Capacitance enhancement of polyaniline coated curved-graphene supercapacitor in redox-active electrolyte”
  • Nanoscale, 2013,5, 4134-4138
Redox-active electrolyte, Graphene, Polyaniline
  • Yaocai Bai, R.B. Rakhi, W. Chen, and H.N. Alshareef, “pH-Induced Structural and Chemical Modification of Hydrothermally Reduced Graphene Oxide for Efficient Supercapacitors”
  • Journal of Power Sources​
    Volume 233, 1 July 2013, Pages 313–319
Supercapacitor; Graphene; pH; Specific capacitance; Hydrothermal; functionalization
  • A.I. Abutaha, S.R.S Kumar, and H.N. Alshareef, “Orientation Dependent Thermopower in Al-Doped ZnO Thin Films”
  • Appl. Phys. Lett. 102, 053507 (2013)
Al-Doped ZnO Thin Films
  • S.R.S Kumar and H.N. Alshareef, “Ultraviolet Laser Deposition of Graphene Thin Films Without Catalytic Sacrificial Layers”
  • Appl. Phys. Lett. 102, 012110 (2013)
Graphene Thin Films
  • I Mejia, A.L. Villasenor, Dongkyu Cha, H.N. Alshareef, B. E. Gnade, and Manuel A. Quevedo, “Fabrication and Characterization of High-Mobility Solution-Based Chalcogenide Thin-Film Devices Transistors”
  • Electron Devices, IEEE Transactions on  (Volume:60 ,  Issue: 1 )
Chalcogenide Thin-Film, High-Mobility, Transistors
  • Unnat Bhansali, M.A. Khan, and H.N. Alshareef, “Organic ferroelectric memory devices with inkjet-printed polymer electrodes on flexible substrates”
  • Microelectronic Engineering
    Volume 105, May 2013, Pages 68–73
Inkjet-printing; Ferroelectric capacitors; PEDOT:PSS; Transparent electrodes; Flexible substrates; P(VDF-TrFE)
  • M. A. Khan, U. Bhansali, and H.N. Alshareef, “All-Polymer Bistable Resistive Memory Device Based on  Nanoscale Phase-Separated PCBM-Ferroelectric Blends
  • Advanced Functional Materials

    Volume 23, Issue 17pages 2145–2152May 6, 2013

  • J. R. Gladden, S. P. Tennakoon, R. Adebisi, Qin Zhang, A.M. Dehkordi, S. Bhattacharya, T.M. Tritt, HN Alshareef, “High temperature elastic constants of rare-earth doped Sr0.9 X0.1 TiO3-δ (X= Pr, Y)”
  • J. Acoust. Soc. Am. 134, 4101 (2013)
High temperature elastic constants
  • R.B. Rakhi, Wei Chen, and H.N. Alshareef, “Influence of calcination temperature on the morphology and energy storage properties of cobalt oxide nanostructures directly grown over carbon cloth substrates”
  • ​Mater Renew Sustain Energy (2013) 2:17
Supercapacitor, Pseudocapacitance, Calcination, Cobalt oxide, Mesoporous, Specific capacitance