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      다중층 나노구조체를 통한 열차단 특성 제어 = Analysis of suppressed thermal conductivity using multiple nanoparticle layers

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      https://www.riss.kr/link?id=A108731683

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      In recent years, energy-management studies in buildings have proven useful for energy savings. Typically, during heating and cooling, the energy from a given building is lost through its windows. Generally, to block the entry of ultraviolet (UV) and infrared (IR) rays, thin films of deposited metals or metal oxides are used, and the blocking of UV and IR rays by these thin films depends on the materials deposited on them. Therefore, by controlling the thicknesses and densities of the thin films, improving the transmittance of visible light and the blocking of heat rays such as UV and IR may be possible. Such improvements can be realized not only by changing the two-dimensional thin films but also by altering the zero-dimensional (0-D) nanostructures deposited on the films. In this study, 0-D nanoparticles were synthesized using a sol –gel procedure. The synthesized nanoparticles were deposited as deep coatings on polymer and glass substrates. Through spectral analysis in the UV–visible (vis) region, thin-film layers of deposited zinc oxide nanoparticles blocked >95 % of UV rays. For high transmittance in the visible-light region and low transmittance in the IR and UV regions, hybrid multiple layers of silica nanoparticles, zinc oxide particles, and fluorine-doped tin oxide nanoparticles were formed on glass and polymer substrates. Spectrophotometry in the UV–vis–near-IR regions revealed that the substrates prevented heat loss well. The glass and polymer substrates achieved transmittance values of 80 % in the visible-light region, 50 % to 60 % in the IR region, and 90 % in the UV region.
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      In recent years, energy-management studies in buildings have proven useful for energy savings. Typically, during heating and cooling, the energy from a given building is lost through its windows. Generally, to block the entry of ultraviolet (UV) and i...

      In recent years, energy-management studies in buildings have proven useful for energy savings. Typically, during heating and cooling, the energy from a given building is lost through its windows. Generally, to block the entry of ultraviolet (UV) and infrared (IR) rays, thin films of deposited metals or metal oxides are used, and the blocking of UV and IR rays by these thin films depends on the materials deposited on them. Therefore, by controlling the thicknesses and densities of the thin films, improving the transmittance of visible light and the blocking of heat rays such as UV and IR may be possible. Such improvements can be realized not only by changing the two-dimensional thin films but also by altering the zero-dimensional (0-D) nanostructures deposited on the films. In this study, 0-D nanoparticles were synthesized using a sol –gel procedure. The synthesized nanoparticles were deposited as deep coatings on polymer and glass substrates. Through spectral analysis in the UV–visible (vis) region, thin-film layers of deposited zinc oxide nanoparticles blocked >95 % of UV rays. For high transmittance in the visible-light region and low transmittance in the IR and UV regions, hybrid multiple layers of silica nanoparticles, zinc oxide particles, and fluorine-doped tin oxide nanoparticles were formed on glass and polymer substrates. Spectrophotometry in the UV–vis–near-IR regions revealed that the substrates prevented heat loss well. The glass and polymer substrates achieved transmittance values of 80 % in the visible-light region, 50 % to 60 % in the IR region, and 90 % in the UV region.

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      참고문헌 (Reference)

      1 구진희 ; 이병우, "수열합성법에 의한 정렬된 ZnO 나노로드 구조의 합성" 한국표면공학회 49 (49): 472-476, 2016

      2 K. Alexandra, "Vapordeposited functional polymer thin films in biological applications" 31 : 6588-6509, 2020

      3 K. Nakata, "TiO2 photocatalysis : Design and applications" 13 : 169-189, 2012

      4 R. Fitton, "The thermal performance of window coverings in a whole house test facility with single-glazed sash windows" 10 : 1419-1431, 2017

      5 C. Thormark, "The effect of material choice on the total energy need and recycling potential of a building" 41 : 1019-1026, 2006

      6 A. N. Banerjee, "Synthesis and characterization of nano-crystalline fluorine-doped tin oxide thin films by solgel method" 28 : 105-110, 2003

      7 C. S. Goh, "Surface treatment of polyethylene terephthalate(PET)film for lamination of flexible photovoltaic devices" 15 : 428-435, 2012

      8 Ş. Hüseyin, "Roll-to roll initiated chemical vapor deposition of super hydrophobic thin films on large-scale flexible thin films on large-scale flexible substrates" 215 : 115466-, 2020

      9 A. E. Maczulak, "Renewable energy: sources and methods" Infobase Publishing 8-10, 2010

      10 E. Fortunato, "Recent advances in ZnO transparent thin film transistors" 487 : 205-211, 2005

      1 구진희 ; 이병우, "수열합성법에 의한 정렬된 ZnO 나노로드 구조의 합성" 한국표면공학회 49 (49): 472-476, 2016

      2 K. Alexandra, "Vapordeposited functional polymer thin films in biological applications" 31 : 6588-6509, 2020

      3 K. Nakata, "TiO2 photocatalysis : Design and applications" 13 : 169-189, 2012

      4 R. Fitton, "The thermal performance of window coverings in a whole house test facility with single-glazed sash windows" 10 : 1419-1431, 2017

      5 C. Thormark, "The effect of material choice on the total energy need and recycling potential of a building" 41 : 1019-1026, 2006

      6 A. N. Banerjee, "Synthesis and characterization of nano-crystalline fluorine-doped tin oxide thin films by solgel method" 28 : 105-110, 2003

      7 C. S. Goh, "Surface treatment of polyethylene terephthalate(PET)film for lamination of flexible photovoltaic devices" 15 : 428-435, 2012

      8 Ş. Hüseyin, "Roll-to roll initiated chemical vapor deposition of super hydrophobic thin films on large-scale flexible thin films on large-scale flexible substrates" 215 : 115466-, 2020

      9 A. E. Maczulak, "Renewable energy: sources and methods" Infobase Publishing 8-10, 2010

      10 E. Fortunato, "Recent advances in ZnO transparent thin film transistors" 487 : 205-211, 2005

      11 J. P. Holdren, "Population and the energy problem" 12 : 231-255, 1991

      12 C. Tuchinda, "Photoprotection by window glass, automobile glass, and sunglasses" 54 : 845-854, 2006

      13 E. Bannier, "Microstructure and photocatalytic activity of suspension plasma sprayed TiO2 coatings on steel and glass substrates" 206 : 378-386, 2011

      14 S. Lin, "Direct spray-coating of highly robust and transparent Ag nanowires for energy saving windows" 62 : 111-116, 2019

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