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장덕례,조용준,허기석,Chang, Duk-Rye,Cho, Yong-Jun,Heo, Gi-Seok 한국섬유공학회 2006 한국섬유공학회지 Vol.43 No.5
PVdF-HFP nanofibers were fabricated by co-electrospinning technique. The fabricated PVdF-HFP nanofibers were characterized using scanning electron microscopy (SEM). We have evaluated systematically the effects of the most important processing parameters: voltage, solution concentration and tip to collector distance, on the morphology of the formed fibers. 7.5 wt%$\sim$20 wt% PVdF-HFP nanofibers of about 495 nm$\sim$2.26 $\mu$m in diameter were fabricated. The average diameter of PVdF-HFP nanofibers increased with increasing concentration of PVdF-HFP solution. It is found that the concentration of PVdF-HFP polymer solution strongly affects the size of the fibers so that diameter of fibers increases with increasing concentration of the solution. Also the applied voltage is strongly correlated with the distribution of nanofibers. In addition, we found an evidence that electrostatic effects influence the stability of discharge.
RF 마그네트론 스퍼터를 이용하여 제작한 MGZO 박막의 구조적 및 전기적, 광학적 특성에 미치는 스퍼터링 전력의 영향
김인영,신승욱,김민성,윤재호,허기석,정채환,문종하,이정용,김진혁,Kim, In Young,Shin, Seung Wook,Kim, Min Sung,Yun, Jae Ho,Heo, Gi Seok,Jeong, Chae Hwan,Moon, Jong-Ha,Lee, Jeong Yong,Kim, Jin Hyoek 한국재료학회 2013 한국재료학회지 Vol.23 No.3
ZnO thin films co-doped with Mg and Ga (MxGyZzO, x + y + z = 1, x = 0.05, y = 0.02 and z = 0.93) were prepared on glass substrates by RF magnetron sputtering with different sputtering powers ranging from 100W to 200W at a substrate temperature of $350^{\circ}C$. The effects of the sputtering power on the structural, morphological, electrical, and optical properties of MGZO thin films were investigated. The X-ray diffraction patterns showed that all the MGZO thin films were grown as a hexagonal wurtzite phase with the preferred orientation on the c-axis without secondary phases such as MgO, $Ga_2O_3$, or $ZnGa_2O_4$. The intensity of the diffraction peak from the (0002) plane of the MGZO thin films was enhanced as the sputtering power increased. The (0002) peak positions of the MGZO thin films was shifted toward, a high diffraction angle as the sputtering power increased. Cross-sectional field emission scanning electron microscopy images of the MGZO thin films showed that all of these films had a columnar structure and their thickness increased with an increase in the sputtering power. MGZO thin film deposited at the sputtering power of 200W showed the best electrical characteristics in terms of the carrier concentration ($4.71{\times}10^{20}cm^{-3}$), charge carrier mobility ($10.2cm^2V^{-1}s^{-1}$) and a minimum resistivity ($1.3{\times}10^{-3}{\Omega}cm$). A UV-visible spectroscopy assessment showed that the MGZO thin films had high transmittance of more than 80 % in the visible region and that the absorption edges of MGZO thin films were very sharp and shifted toward the higher wavelength side, from 270 nm to 340 nm, with an increase in the sputtering power. The band-gap energy of MGZO thin films was widened from 3.74 eV to 3.92 eV with the change in the sputtering power.
TIZO/Ag/TIZO 다층막 투명전극을 이용한 폴리에스터 아크릴레이트 기반 고분자분산액정의 전기광학적 특성 연구
조정대 ( Jung-dae Cho ),허기석 ( Gi-seok Heo ),홍진후 ( Jin-who Hong ) 한국공업화학회 2022 공업화학 Vol.33 No.1
본 연구에서는 RF/DC 마그네트론 증착법을 이용하여 유리 기판 상에 실온에서 TIZO/Ag/TIZO 다층막 투명전극 필름을 증착하였다. 전체 박막 두께 60 nm TIZO/Ag/TIZO (10 nm/10 nm/40 nm)로 이루어진 다층막의 경우 650 nm에서 투과도는 86.5%, 면저항 값은 8.1 Ω/□를 나타냈으며, 적외선(열선)을 효과적으로 차단할 수 있는 투과도 특성 때문에 향후 에너지 절약형 스마트 윈도우로서의 적용도 가능할 것으로 판단된다. TIZO/Ag/TIZO 다층막 투명전극을 적용한 폴리에스터 아크릴레이트 기반 고분자분산액정(polymer-dispersed liquid crystal, PDLC) 시스템에 있어서 액정과 prepolymer의 함량비, PDLC 코팅층의 두께 및 자외선 세기 변화에 따른 전기광학 특성 및 표면 형태학에 미치는 영향이 조사되었다. 15 μm의 PDLC 층 두께에 1.5 mW/cm2의 UV 세기로 광경화된 TIZO/Ag/TIZO 다층막 투명전극 적용 PDLC 셀이 전반적으로 양호한 구동 전압과 on-state 투과도 및 뛰어난 off haze를 나타냈으며, PDLC 복합체의 고분자 매트릭스 표면에 형성된 액정 droplet들은 입사광을 효율적으로 산란시킬 수 있는 1~3 μm 크기를 갖고 있었다. 또한, 본 연구에서 제조된 TIZO/Ag/TIZO 다층막 투명전극 적용 PDLC 기반 스마트 윈도우는 연한 갈색의 색조를 띠고 있어서 심미적 측면에서 색다른 장점을 부여할 것으로 기대된다. Ti-In-Zn-O (TIZO)/Ag/TIZO multilayer transparent electrodes were prepared on glass substrates at room temperature using RF/DC magnetron sputtering. Obtained multilayer structure comprising TIZO/Ag/TIZO (10 nm/10 nm/40 nm) with the total thickness of 60 nm showed a transmittance of 86.5% at 650 nm and a sheet resistance of 8.1 Ω/□. The multilayer films were expected to be applicable for use in energy-saving smart window based on polymer-dispersed liquid crystal (PDLC) because of their transmittance properties to effectively block infrared rays (heat rays). We investigated the effects of the content ratio of prepolymer, the thickness of the PDLC coating layer, and the ultraviolet (UV) light intensity on electro-optical properties, and the surface morphology of polyester acrylate-based PDLC systems using new TIZO/Ag/TIZO transparent conducting electrodes. A PDLC cell with a thickness of 15 μm PDLC layer photocured at an UV intensity of 1.5 mW/cm2 exhibited good driving voltage, favorable on-state transmittance, and excellent off-haze. The LC droplets formed on the surface of the polymer matrix of the PDLC composite had a size range of 1 to 3 μm capable of efficiently scattering incident light. Also, the PDLC-based smart window manufactured using TIZO/Ag/TIZO multi-layered transparent electrodes in this study exhibited a light brown, which will have an advantage in terms of aesthetics.
투명 전도성 ZITO/Ag/ZITO 다층막 필름 적용을 위한 아크릴레이트 기반 고분자분산액정의 전기광학적 특성 최적화
조정대 ( Jung-dae Cho ),김양배 ( Yang-bae Kim ),허기석 ( Gi-seok Heo ),김은미 ( Eun-mi Kim ),홍진후 ( Jin-who Hong ) 한국공업화학회 2020 공업화학 Vol.31 No.3
본 연구에서는 RF/DC 마그네트론 증착법을 이용하여 실온에서 유리 기판 상에 ZITO/Ag/ZITO 다층막 투명전극을 제조하였다. ZITO/Ag/ZITO (100/8/42 nm)로 이루어진 다층막 구조에 대해, 면저항이 9.4 Ω/m<sup>2</sup>이고 550 nm에서 투과도가 83.2%인 투명 전도성 필름이 얻어졌다. ZITO/Ag/ZITO 다층막 필름의 면저항 및 투과도 특성은 적외선(열선)을 효과적으로 차단할 수 있기 때문에 고분자분산액정(polymer-dispersed liquid crystal, PDLC) 기반 스마트 윈도우 적용에 매우 유용함을 알 수 있었으며 이로 인해 에너지 절약형 스마트 유리로서의 응용도 가능할 것으로 판단된다. 제조된 ZITO/ Ag/ZITO 다층막 투명전극을 적용한 2관능성 우레탄 아크릴레이트 기반 PDLC 시스템에 있어서 PDLC 층 두께 및 자 외선(ultraviolet, UV) 세기 변화가 전기광학적 특성, 광중합 동력학 및 표면 형태학에 미치는 영향을 조사하였다. 15 μm의 PDLC 층 두께를 가지며 2.0 mW/cm<sup>2</sup>의 UV 세기로 광경화된 PDLC 셀이 우수한 off-state 불투명도, 높은 on-state 투과 도 및 양호한 구동 전압을 나타냈다. 또한, 본 연구에서 제조된 최적 조건의 PDLC 기반 스마트 윈도우는 광을 효율적으로 산란시킬 수 있는 2~5 μm 크기의 양호한 마이크로 구조를 갖는 액정 droplet들이 형성되었으며, 이로 인해 우수한 최종 물성을 갖는 PDLC 셀이 제조되었다. ZITO/Ag/ZITO multilayer transparent electrodes at room temperature on glass substrates were prepared using RF/DC magnetron sputtering. Transparent conductive films with a sheet resistance of 9.4 Ω/m<sup>2</sup> and a transmittance of 83.2% at 550 nm were obtained for the multilayer structure comprising ZITO/Ag/ZITO (100/8/42 nm). The sheet resistance and transmittance of ZITO/Ag/ZITO multilayer films meant that they would be highly applicable for use in polymer-dispersed liquid crystal (PDLC)-based smart windows due to the ability to effectively block infrared rays (heat rays) and thereby act as an energy-saving smart glass. Effects of the thickness of the PDLC layer and the intensity of ultraviolet light (UV) on electro-optical properties, photopolymerization kinetics, and morphologies of difunctional urethane acrylate-based PDLC systems were investigated using new transparent conducting electrodes. A PDLC cell photo-cured using UV at an intensity of 2.0 mW/cm<sup>2</sup> with a 15 μm-thick PDLC layer showed outstanding off-state opacity, good on-state transmittance, and favorable driving voltage. Also, the PDLC-based smart window optimized in this study formed liquid crystal droplets with a favorable microstructure, having an average size range of 2~5 μm for scattering light efficiently, which could contribute to its superior final performance.