Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh

In this study, we report for the first time on the convection phenomenon for the consistent and sensitive detection of target materials (particulate matter (PM) or gases) with a high-performance transparent heater. The high-performance transparent heater, based on Pt-decorated Ni micromesh, was fabr...

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Main Authors: Han-Jung Kim, Dong-Ik Kim, Sam-Soo Kim, Young-You Kim, Sung-Eun Park, Gyuseok Choi, Dong Wook Lee, Yoonkap Kim
Format: Article
Language:English
Published: AIP Publishing LLC 2017-02-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4977021
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author Han-Jung Kim
Dong-Ik Kim
Sam-Soo Kim
Young-You Kim
Sung-Eun Park
Gyuseok Choi
Dong Wook Lee
Yoonkap Kim
author_facet Han-Jung Kim
Dong-Ik Kim
Sam-Soo Kim
Young-You Kim
Sung-Eun Park
Gyuseok Choi
Dong Wook Lee
Yoonkap Kim
author_sort Han-Jung Kim
collection DOAJ
description In this study, we report for the first time on the convection phenomenon for the consistent and sensitive detection of target materials (particulate matter (PM) or gases) with a high-performance transparent heater. The high-performance transparent heater, based on Pt-decorated Ni micromesh, was fabricated by a combination of transfer printing process and Pt sputtering. The resulting transparent heater exhibited excellent mechanical durability, adhesion with substrates, flexibility, and heat-generating performance. We monitored the changes in the PM concentration and temperature in an airtight chamber while operating the heater. The temperature in the chamber was increased slightly, and the PM2.5 concentration was increased by approximately 50 times relative to the initial state which PM is deposed in the chamber. We anticipate that our experimental findings will aid in the development and application of heaters for sensors and actuators as well as transparent electrodes and heating devices.
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spelling doaj.art-e4032c2350794e79b63b011d2b62a4b02022-12-22T01:10:58ZengAIP Publishing LLCAIP Advances2158-32262017-02-0172025112025112-710.1063/1.4977021037702ADVObservation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromeshHan-Jung Kim0Dong-Ik Kim1Sam-Soo Kim2Young-You Kim3Sung-Eun Park4Gyuseok Choi5Dong Wook Lee6Yoonkap Kim7Center for Integrated Smart Sensors (CISS), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, South KoreaCenter for Integrated Smart Sensors (CISS), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, South KoreaConvergence Materials & Parts Technology Research Center, Gumi Electronics & Information Technology Research Institute (GERI), Gumi 39171, South KoreaDepartment of Physics, Kongju National University, Gongju 32588, South KoreaConvergence Materials & Parts Technology Research Center, Gumi Electronics & Information Technology Research Institute (GERI), Gumi 39171, South KoreaConvergence Materials & Parts Technology Research Center, Gumi Electronics & Information Technology Research Institute (GERI), Gumi 39171, South KoreaNational NanoFab Center (NNFC), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, South KoreaConvergence Materials & Parts Technology Research Center, Gumi Electronics & Information Technology Research Institute (GERI), Gumi 39171, South KoreaIn this study, we report for the first time on the convection phenomenon for the consistent and sensitive detection of target materials (particulate matter (PM) or gases) with a high-performance transparent heater. The high-performance transparent heater, based on Pt-decorated Ni micromesh, was fabricated by a combination of transfer printing process and Pt sputtering. The resulting transparent heater exhibited excellent mechanical durability, adhesion with substrates, flexibility, and heat-generating performance. We monitored the changes in the PM concentration and temperature in an airtight chamber while operating the heater. The temperature in the chamber was increased slightly, and the PM2.5 concentration was increased by approximately 50 times relative to the initial state which PM is deposed in the chamber. We anticipate that our experimental findings will aid in the development and application of heaters for sensors and actuators as well as transparent electrodes and heating devices.http://dx.doi.org/10.1063/1.4977021
spellingShingle Han-Jung Kim
Dong-Ik Kim
Sam-Soo Kim
Young-You Kim
Sung-Eun Park
Gyuseok Choi
Dong Wook Lee
Yoonkap Kim
Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
AIP Advances
title Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
title_full Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
title_fullStr Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
title_full_unstemmed Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
title_short Observation of convection phenomenon by high-performance transparent heater based on Pt-decorated Ni micromesh
title_sort observation of convection phenomenon by high performance transparent heater based on pt decorated ni micromesh
url http://dx.doi.org/10.1063/1.4977021
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