Browsing by Author Tho Duc Nguyen

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  • A-review-on-organic-spintronic-materials-and-devices-I-Magnetic-field-effect-on-organic-light-emitting-diodes_2016_Journal-of-Science-Advanced-Materia.pdf.jpg
  • Article


  • Authors: Rugang Geng; Timothy Tyler Daugherty; Kevin Do; Hoang Mai Luong; Tho Duc Nguyen (2016)

  • Organic spintronics is an emerging and potential platform for future electronics and display due to the intriguing properties of organic semiconductors (OSCs). For the past decade, studies have focused on three types of organic spintronic phenomena: (i) magnetic field effect (MFE) in organic light emitting diodes (OLEDs), where spin mixing between singlet and triplet polaron pairs (PP) can be influenced by an external magneticfield leading to organic magnetoresistive effect (OMAR); (ii) magnetoresistance (MR) in organic spin valves (OSVs), where spin injection, transport, manipulation, and detection have been demonstrated; and (iii) magnetoelectroluminescence (MEL) bipolar OSVs ...

  • A-review-on-organic-spintronic-materials-and-devices-II-Magnetoresistance-in-organic-spin-valves-and-spin-organic-light-emitting-diodes_2016_Journal-o.pdf.jpg
  • Article


  • Authors: Rugang Geng; Luong, Hoang Mai; Timothy Tyler Daugherty; Lawrence Hornak; Tho Duc Nguyen (2016)

  • In the preceding review paper, Paper I [Journal of Science: Advanced Materials and Devices 1 (2016) 128 e140], we showed the major experimental and theoretical studies on the first organic spintronic subject, namely organic magneto-resistance (OMAR) in organic light emitting diodes (OLEDs). The topic has recently been of renewed interest as a result of a demonstration of the magneto-conductance (MC) that exceeds 1000% at room temperature using a certain type of organic compounds and device operating condition. In this report, we will review two additional organic spintronic devices, namely organic spin valves (OSVs) where only spin polarized holes exist to cause magneto-resistance (...

Browsing by Author Tho Duc Nguyen

Jump to: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
or enter first few letters:  
Showing results 1 to 2 of 2
  • A-review-on-organic-spintronic-materials-and-devices-I-Magnetic-field-effect-on-organic-light-emitting-diodes_2016_Journal-of-Science-Advanced-Materia.pdf.jpg
  • Article


  • Authors: Rugang Geng; Timothy Tyler Daugherty; Kevin Do; Hoang Mai Luong; Tho Duc Nguyen (2016)

  • Organic spintronics is an emerging and potential platform for future electronics and display due to the intriguing properties of organic semiconductors (OSCs). For the past decade, studies have focused on three types of organic spintronic phenomena: (i) magnetic field effect (MFE) in organic light emitting diodes (OLEDs), where spin mixing between singlet and triplet polaron pairs (PP) can be influenced by an external magneticfield leading to organic magnetoresistive effect (OMAR); (ii) magnetoresistance (MR) in organic spin valves (OSVs), where spin injection, transport, manipulation, and detection have been demonstrated; and (iii) magnetoelectroluminescence (MEL) bipolar OSVs ...

  • A-review-on-organic-spintronic-materials-and-devices-II-Magnetoresistance-in-organic-spin-valves-and-spin-organic-light-emitting-diodes_2016_Journal-o.pdf.jpg
  • Article


  • Authors: Rugang Geng; Luong, Hoang Mai; Timothy Tyler Daugherty; Lawrence Hornak; Tho Duc Nguyen (2016)

  • In the preceding review paper, Paper I [Journal of Science: Advanced Materials and Devices 1 (2016) 128 e140], we showed the major experimental and theoretical studies on the first organic spintronic subject, namely organic magneto-resistance (OMAR) in organic light emitting diodes (OLEDs). The topic has recently been of renewed interest as a result of a demonstration of the magneto-conductance (MC) that exceeds 1000% at room temperature using a certain type of organic compounds and device operating condition. In this report, we will review two additional organic spintronic devices, namely organic spin valves (OSVs) where only spin polarized holes exist to cause magneto-resistance (...