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Dive into the research topics where Jong Bae Park is active.

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Featured researches published by Jong Bae Park.


Nano Letters | 2013

Hydrogen-induced morphotropic phase transformation of single-crystalline vanadium dioxide nanobeams.

Woong-Ki Hong; Jong Bae Park; Jongwon Yoon; Bong-Joong Kim; Jung Inn Sohn; Young Boo Lee; Tae-Sung Bae; Sung-Jin Chang; Yun Suk Huh; Byoungchul Son; Eric A. Stach; Takhee Lee; Mark E. Welland

We report a morphotropic phase transformation in vanadium dioxide (VO2) nanobeams annealed in a high-pressure hydrogen gas, which leads to the stabilization of metallic phases. Structural analyses show that the annealed VO2 nanobeams are hexagonal-close-packed structures with roughened surfaces at room temperature, unlike as-grown VO2 nanobeams with the monoclinic structure and with clean surfaces. Quantitative chemical examination reveals that the hydrogen significantly reduces oxygen in the nanobeams with characteristic nonlinear reduction kinetics which depend on the annealing time. Surprisingly, the work function and the electrical resistance of the reduced nanobeams follow a similar trend to the compositional variation due mainly to the oxygen-deficiency-related defects formed at the roughened surfaces. The electronic transport characteristics indicate that the reduced nanobeams are metallic over a large range of temperatures (room temperature to 383 K). Our results demonstrate the interplay between oxygen deficiency and structural/electronic phase transitions, with implications for engineering electronic properties in vanadium oxide systems.


ACS Applied Materials & Interfaces | 2016

High Performance PbS Quantum Dot/Graphene Hybrid Solar Cell with Efficient Charge Extraction

Byung-Sung Kim; Darren C. J. Neo; Bo Hou; Jong Bae Park; Yuljae Cho; Nanlin Zhang; John Hong; Sangyeon Pak; Sanghyo Lee; Jung Inn Sohn; Hazel E. Assender; Andrew A. R. Watt; SeungNam Cha; Jong Min Kim

Hybrid colloidal quantum dot (CQD) solar cells are fabricated from multilayer stacks of lead sulfide (PbS) CQD and single layer graphene (SG). The inclusion of graphene interlayers is shown to increase power conversion efficiency by 9.18%. It is shown that the inclusion of conductive graphene enhances charge extraction in devices. Photoluminescence shows that graphene quenches emission from the quantum dot suggesting spontaneous charge transfer to graphene. CQD photodetectors exhibit increased photoresponse and improved transport properties. We propose that the CQD/SG hybrid structure is a route to make CQD thin films with improved charge extraction, therefore resulting in improved solar cell efficiency.


Nanoscale | 2014

In situ probing of doping- and stress-mediated phase transitions in a single-crystalline VO2 nanobeam by spatially resolved Raman spectroscopy

Sung-Jin Chang; Jong Bae Park; Gaehang Lee; Hae Jin Kim; Jin-Bae Lee; Tae-Sung Bae; Young-Kyu Han; Tae Jung Park; Yun Suk Huh; Woong-Ki Hong

We demonstrate an experimental in situ observation of the temperature-dependent evolution of doping- and stress-mediated structural phase transitions in an individual single-crystalline VO₂ nanobeam on a Au-coated substrate under exposure to hydrogen gas using spatially resolved Raman spectroscopy. The nucleation temperature of the rutile R structural phase in the VO₂ nanobeam upon heating under hydrogen gas was lower than that under air. The spatial structural phase evolution behavior along the length of the VO₂ nanobeam under hydrogen gas upon heating was much more inhomogeneous than that along the length of the same nanobeam under air. The triclinic T phase of the VO₂ nanobeam upon heating under hydrogen gas transformed to the R phase and this R phase was stabilized even at room temperature in air after sample cooling. In particular, after the VO₂ nanobeam with the R phase was annealed at approximately 250 °C in air, it exhibited the monoclinic M1 phase (not the T phase) at room temperature during heating and cooling cycles. These results were attributed to the interplay between hydrogen doping and stress associated with nanobeam-substrate interactions. Our study has important implications for engineering metal-insulator transition properties and developing functional devices based on VO₂ nanostructures through doping and stress.


ACS energy letters | 2016

Highly Monodispersed PbS Quantum Dots for Outstanding Cascaded-Junction Solar Cells

Bo Hou; Yuljae Cho; Byung-Sung Kim; John Hong; Jong Bae Park; Se Jin Ahn; Jung Inn Sohn; SeungNam Cha; Jong Min Kim

High-performance cascaded-junction quantum dot solar cells (CJQDSCs) are fabricated from as-prepared highly monodispersed lead sulfide QDs. The cells have a high power conversion of 9.05% and a short-circuit current density of 32.51 mA cm–2. A reliable and effective stratagem for fabricating high-quality lead sulfide quantum dots (QD) is explored through a “monomer” concentration-controlled experiment. Robust QDSC performances with different band gaps are demonstrated from the as-proposed synthesis and processing stratagems. Various potential CJQDSCs can be envisioned from the band edge evolution of the QDs as a function of size and ligands reported here.


New Journal of Chemistry | 2009

A facile method to prepare regioregular poly(3-hexylthiophene) nanorod arrays using anodic aluminium oxide templates and capillary force

Su-Jin Baek; Jong Bae Park; Wonjoo Lee; Sung-Hwan Han; Jouhahn Lee; Soo-Hyoung Lee

Regioregular poly(3-hexylthiophene) (RR-P3HT) nanorod arrays were prepared on the indium tin oxide (ITO) substrate by capillary force in a vacuum oven (0.855 torr, 250 °C) using a drop-coating of RR-P3HT and anodic aluminium oxide (AAO) templates. The AAO templates were prepared by a two step anodizing process in an oxalic acid electrolyte. The templates had a highly ordered structure with a uniform pore diameter of ∼55–80 nm and cell lengths of ∼100–3930 nm. With suitable temperature and capillary force in the vacuum oven, the drop-coated RR-P3HT solution infiltrated the AAO templates. After removal of the AAO template, the RR-P3HT has a nanorod array form, with diameters of ∼55 nm and heights of ∼70 nm.


Nanotechnology | 2013

Strain effects in a single ZnO microwire with wavy configurations

Jong Bae Park; Woong-Ki Hong; Tae Sung Bae; Jung Inn Sohn; SeungNam Cha; Jong Min Kim; Jongwon Yoon; Takhee Lee

We investigate strain-induced optical modulation in a ZnO microwire with wavy geometries induced by mechanical strains. Curved sections of the wavy ZnO microwire show red-/blue-shifts of near-band-edge emission and broadening of full width at half maximum in cathodoluminescence spectra along the length of the wavy ZnO microwire, compared with straight sections. The observed variations indicate that local strains in the wavy ZnO microwire lead to strain-dependent local changes of its energy band structure. The local bending curvature calculations using a geometric model also provide correlation between the shift of the near-band-edge emission peaks and the bending strain.


Nanotechnology | 2015

Defect-mediated modulation of optical properties in vertically aligned ZnO nanowires via substrate-assisted Ga incorporation

Jong Bae Park; Young Tea Chun; Young Boo Lee; Jung Inn Sohn; Woong-Ki Hong

We report the defect-mediated modulation of optical properties in vertically aligned ZnO nanowires via a substrate-assisted Ga incorporation method. We find that Ga atoms were incorporated into a ZnO lattice via the diffusion of liquid Ga droplets from a GaAs substrate in which as-grown ZnO nanowires were placed face down on the GaAs substrate and annealed at 650 °C. Based on structural and compositional characterization, it was confirmed that the substrate-assisted incorporation of Ga can induce a high defect density in vertically aligned ZnO nanowires grown on a Si substrate. In addition, distinct differences in optical properties between as-grown and Ga-incorporated ZnO nanowires were found and discussed in terms of defect-mediated modifications of energy band states, which were associated with the generation and recombination of photoexcited carriers. Furthermore, it was clearly observed that for Ga-incorporated ZnO nanowires, the photocurrent rise and decay processes were slower and the photocurrents under UV illumination were significantly higher compared with as-grown nanowires.


Nano Energy | 2015

Enhanced energy harvesting based on surface morphology engineering of P(VDF-TrFE) film

Yuljae Cho; Jong Bae Park; Byung-Sung Kim; Juwon Lee; Woong-Ki Hong; Il-Kyu Park; Jae Eun Jang; Jung Inn Sohn; SeungNam Cha; Jong Min Kim


Advanced electronic materials | 2016

Enhanced Ferroelectric Property of P(VDF‐TrFE‐CTFE) Film Using Room‐Temperature Crystallization for High‐Performance Ferroelectric Device Applications

Yuljae Cho; Docheon Ahn; Jong Bae Park; Sangyeon Pak; Sanghyo Lee; Byoung Ok Jun; John Hong; Su Yong Lee; Jae Eun Jang; JinPyo Hong; Stephen M. Morris; Jung Inn Sohn; SeungNam Cha; Jong Min Kim


Journal of Materials Chemistry | 2016

Enhanced charge carrier transport properties in colloidal quantum dot solar cells via organic and inorganic hybrid surface passivation

John Hong; Bo Hou; Jongchul Lim; Sangyeon Pak; Byung-Sung Kim; Yuljae Cho; Juwon Lee; Young-Woo Lee; Paul Giraud; Sanghyo Lee; Jong Bae Park; Stephen M. Morris; Henry J. Snaith; Jung Inn Sohn; SeungNam Cha; Jong Min Kim

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Jong Min Kim

University of Cambridge

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Woong-Ki Hong

Gwangju Institute of Science and Technology

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Bo Hou

University of Oxford

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