International Journal Articles (111)
* Corresponding Author
2024 (1)
[IF 8.2, 31/359 (ranked in the top 8.49%) in Environmental Sciences]
2023 (4)
[IF 8.1, 15/171 (ranked in the top 8.48%) in Engineering, Chemical]
[IF 10.7, 3/106 (ranked in the top 2.36%) in Chemistry, Analytical]
[IF 13.3, 3/81 (ranked in the top 3.09%) in Engineering, Environmental]
[IF 12.2, 12/359 (ranked in the top 3.20%) in Environmental Sciences]
2022 (3)
[IF 15.8, 14/232 (ranked in the top 5.82%) in Chemistry, Multidisciplinary]
[IF 18.5, 10/232 (ranked in the top 4.09%) in Chemistry, Multidisciplinary]
[IF 12.8, 2/53 (ranked in the top 2.83%) in Materials Science, Biomaterials]
2021 (3)
[IF 5.8, 64/359 (ranked in the top 17.69%) in Environmental Sciences]
[IF 9.7, 24/359 (ranked in the top 6.55%) in Environmental Sciences]
[IF 7.7, 16/403 (ranked in the top 3.85%) in Public, Environmental & Occupational Health]
2020 (4)
[IF 15.8, 14/232 (ranked in the top 5.82%) in Chemistry, Multidisciplinary]
[IF 31.6, 8/439 (ranked in the top 1.71%) in Materials Science, Multidisciplinary]
[IF 13.3, 3/81 (ranked in the top 3.09%) in Engineering, Environmental]
[IF 13.3, 3/81 (ranked in the top 3.09%) in Engineering, Environmental]
2019 (8)
[IF 15.8, 14/232 (ranked in the top 5.82%) in Chemistry, Multidisciplinary]
[IF 12.4, 8/190 (ranked in the top 3.95%) in Medicine, Research & Experimental]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
Selected as the Inside Back Cover
[IF 5.8, 64/359 (ranked in the top 17.69%) in Environmental Sciences]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 13.3, 3/81 (ranked in the top 3.09%) in Engineering, Environmental]
[IF 12.2, 12/359 (ranked in the top 3.20%) in Environmental Sciences]
[IF 9.3, 31/232 (ranked in the top 13.15%) in Chemistry, Multidisciplinary]
2018 (7)
[IF 15.8, 14/232 (ranked in the top 5.82%) in Chemistry, Multidisciplinary]
Selected as a Featured Article
[IF 8.6, 67/439 (ranked in the top 15.15%) in Materials Science, Multidisciplinary]
[IF 5.8, 34/180 (ranked in the top 18.61%) in Physics, Applied]
[IF 9.3, 31/232 (ranked in the top 13.15%) in Chemistry, Multidisciplinary]
[IF 14.3, 29/439 (ranked in the top 6.49%) in Materials Science, Multidisciplinary]
[IF 9.3, 31/232 (ranked in the top 13.15%) in Chemistry, Multidisciplinary]
Featured in an IYPT themed online collection on Precious metals for cancer treatment in RSC
[IF 6.7, 28/159 (ranked in the top 17.29%) in Physics, Applied]
2017 (5)
[IF 3.6, 30/106 (ranked in the top 27.83%) in Toxicology]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 8.6, 67/439 (ranked in the top 15.15%) in Materials Science, Multidisciplinary]
[IF 2.9, 72/180 (ranked in the top 39.72%) in Physics, Applied]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
2016 (8)
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 3.8, 25/135 (ranked in the top 18.15%) in Multidisciplinary Sciences]
[IF 5.8, 34/180 (ranked in the top 18.61%) in Physics, Applied]
2015 (2)
[IF 12.2, 12/359 (ranked in the top 3.20%) in Environmental Sciences]
[IF 5.8, 34/180 (ranked in the top 18.61%) in Physics, Applied]
2014 (13)
[IF 4.3, 73/232 (ranked in the top 31.25%) in Chemistry, Multidisciplinary]
[IF 3.7, 179/439 (ranked in the top 40.66%) in Chemistry, Multidisciplinary]
[IF 13.0, 13/180 (ranked in the top 6.94%) in Physics, Applied]
[IF 5.5, 3/58 (ranked in the top 4.31%) in Chemistry, Organic]
[IF 6.1, 11/53 (ranked in the top 19.81%) in Materials Science, Biomaterials]
[IF 3.8, 75/178 (ranked in the top 41.85%) in Chemistry, Physical]
[IF 10.7, 17/173 (ranked in the top 9.54%) in Energy & Fuels]
[IF 5.1, 12/94 (ranked in the top 12.23%) in Polymer Science]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 5.1, 12/94 (ranked in the top 12.23%) in Polymer Science]
[IF 3.5, 59/180 (ranked in the top 32.50%) in Physics, Applied]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
2013 (6)
[IF 3.9, 81/232 (ranked in the top 34.69%) in Chemistry, Multidisciplinary]
[IF 13.3, 3/81 (ranked in the top 3.09%) in Engineering, Environmental]
[IF 3.9, 81/232 (ranked in the top 34.69%) in Chemistry, Multidisciplinary]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 9.4, 32/178 (ranked in the top 17.69%) in Chemistry, Physical]
[IF 8.7, 1/40 (ranked in the top 1.25%) in Acoustics]
2012 (10)
[IF 4.2, 25/94 (ranked in the top 26.06%) in Polymer Science]
[IF 2.7, 110/232 (ranked in the top 47.19%) in Chemistry, Multidisciplinary]
[IF 5.8, 34/180 (ranked in the top 18.61%) in Physics, Applied]
[IF 7.2, 86/439 (ranked in the top 19.48%) in Materials Science, Multidisciplinary]
[IF 3.5, 59/180 (ranked in the top 32.50%) in Physics, Applied]
[IF 4.2, 28/110 (ranked in the top 25.00%) in Meteorology & Atmospheric Sciences]
[IF 2.5, 209/359 (ranked in the top 58.08%) in Environmental Sciences]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 8.7, 1/40 (ranked in the top 1.25%) in Acoustics]
[IF 2.0, 49/79 (ranked in the top 61.39%) in Physics, Condensed Matter]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 2.7, 77/180 (ranked in the top 42.50%) in Physics, Applied]
[IF 8.1, 15/171 (ranked in the top 8.48%) in Engineering, Chemical]
[IF 3.1, 9/23 (ranked in the top 36.96%) in Materials Science, Coatings & Films]
[IF 2.0, 49/79 (ranked in the top 61.39%) in Physics, Condensed Matter]
[IF 3.9, 37/181 (ranked in the top 20.17%) in Engineering, Mechanical]
[IF 2.0, 49/79 (ranked in the top 61.39%) in Physics, Condensed Matter]
[IF 9.4, 32/178 (ranked in the top 17.69%) in Chemistry, Physical]
[IF 3.7, 179/439 (ranked in the top 40.66%) in Chemistry, Multidisciplinary]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 3.5, 59/180 (ranked in the top 32.50%) in Physics, Applied]
[IF 12.2, 12/359 (ranked in the top 3.20%) in Environmental Sciences]
[IF 10.8, 19/359 (ranked in the top 5.15%) in Environmental Sciences]
[IF 5.8, 34/180 (ranked in the top 18.61%) in Physics, Applied]
[IF 2.6, 65/181 (ranked in the top 35.64%) in Engineering, Mechanical]
[IF 4.8, 2/38 (ranked in the top 3.95%) in Materials Science, Characterization & Testing]
[IF 1.5, 117/181 (ranked in the top 64.36%) in Engineering, Mechanical]
[IF 3.1, 64/180 (ranked in the top 35.28%) in Physics, Applied]
[IF 8.3, 70/439 (ranked in the top 15.83%) in Materials Science, Multidisciplinary]
[IF 5.3, 5/23 (ranked in the top 19.57%) in Materials Science, Coatings & Films]
[IF 3.9, 37/181 (ranked in the top 20.17%) in Engineering, Mechanical]
[IF 4.7, 15/45 (ranked in the top 32.22%) in Electrochemistry]
[IF 9.7, 1/20 (ranked in the top 2.50%) in Agricultural Engineering]
[IF 3.7, 179/439 (ranked in the top 40.66%) in Chemistry, Multidisciplinary]
[IF 3.9, 37/181 (ranked in the top 20.17%) in Engineering, Mechanical]
[IF 5.3, 5/23 (ranked in the top 19.57%) in Materials Science, Coatings & Films]
[IF 3.3, 199/439 (ranked in the top 45.22%) in Materials Science, Multidisciplinary]
[IF 1.8, 273/359 (ranked in the top 75.91%) in Environmental Sciences]
[IF 10.8, 19/359 (ranked in the top 5.15%) in Environmental Sciences]
[IF 4.3, 52/403 (ranked in the top 12.78%) in Public, Environmental & Occupational Health]
2007 (4)
[IF 10.5, 50/439 (ranked in the top 11.28%) in Materials Science, Multidisciplinary]
Index to Scientific & Technical Proceedings (ISTP), Web of Science
Index to Scientific & Technical Proceedings (ISTP), Web of Science
[IF 8.2, 31/359 (ranked in the top 8.49%) in Environmental Sciences]
[IF 3.9, 37/181 (ranked in the top 20.17%) in Engineering, Mechanical]
[IF 10.5, 50/439 (ranked in the top 11.28%) in Materials Science, Multidisciplinary]
Book Chapter
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Spark Ablation: Building Blocks for Nanotechnology
- Jenny Stanford Publishing, 01/24/2020 -
Chapter 13. Spark Ablation for Biomedical Application
Ph.D Dissertation
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Synthesis of Nanoparticles by Electroless Deposition and/or Spark Generation and Their Applications [Part I, Part II, Part III]
Committee: Dr. Jungho Hwang (Editor of Aerosol and Air Quality Research)
Dr. Mansoo Choi (Editor-in-Chief of Journal of Aerosol Science)
Dr. Yong-Jun Kim
Dr. Hyo-Il Jung
Dr. Chang-Ha Lee
International Patents (25)
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Droplet Generating Device and Prevention System Comprising the Same (PCT/KR2023/017013), Oct 30, 2023.
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Electrode, Method for Manufacturing of the Same and System for Discharging Electrostatic Comprising the Same (PCT/KR2022/010996), Jul 26, 2022.
Electrode, Manufacturing Method Therefor, and Electrostatic Discharge System Comprising Same (US 18/686,421), Feb 25, 2024
Electrode, Manufacturing Method Therefor, and Electrostatic Discharge System Comprising Same (EP22861570.4), Mar 18, 2024
电极、其制备方法以及包括上述电极的静电放电系统 (CN202280057837.2) Feb 23, 2024. -
Electrode, Method for Manufacturing of the Same and System for Discharging Electrostatic Comprising the Same (PCT/KR2022/010994), Jul 26, 2022.
Electrode, Manufacturing Method Therefor, and Electrostatic Discharge System Comprising Same (US 18/707,612), May 06, 2024
Electrode, Manufacturing Method Therefor, And Electrostatic Discharge System Comprising Same (EP22890125.2), May 30, 2024
电极及其制造方法以及包括其的静电放电系统 (CN202280086104.1) Jun 26, 2024. -
Pathogen Detection Method and Apparatus (US 17/472,985), Sep 13, 2021.
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Bio-Aerosol Capture Apparatus (PCT/KR2020/019082), Dec 24, 2020.
Apparatus for Capturing Bioaerosols (US 11,833,527), December 05, 2023: Allowance Notification Date (15-November-2023). -
Personal Sampler for Bioaerosol (US 11,754,475), September 12, 2023.
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Multi-Functional Net and Method of Preparing Same (PCT/KR2019/010512), Aug 19, 2019.
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Method for Measuring Virus and Mold in Air (PCT/KR2019/002061), Feb 20, 2019.
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Apparatus for Generating Droplet and Electronic Cigarette Having the Same (PCT-KR2018-016643), Dec 26, 2018.
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Portable Bio-Aerosol Collector and Bio-Aerosol Analyzing Method (PCT/KR2017/010015), Sep 12, 2017.
Portable Bio-Aerosol Collection Device and Analysis Method (US 16/328,766), Feb 27, 2019. -
Multifunctional Filter Medium, Method and Apparatus for Preparing the Same (PCT/KR2016/015403), Dec 28, 2016.
Multifunctional Filter Medium, and Method and Apparatus for Manufacturing Same (US 10,688,425), June 23, 2020 (Allowance Notification Date, Apr 03, 2020). -
Functionalized Fiber for Heavy Metal Adsorption and Method of Preparing the Same (PCT/KR2016/013272), Nov 17, 2016.
Functional Fiber for Adsorbing Heavy Metal and Method for Producing Same (US 10,722,834), July 28, 2020 (Allowance Notification Date, Mar 18, 2020). -
Preparation Apparatus for Nanocomposite and Self-Assembly Preparation Method for Nanocomposite (PCT/KR2016/012789), Nov 08, 2016.
Preparation Apparatus for Nanocomposite Material and Self-Assembly Preparation Method (US 10,786,460), Sep 29, 2020 (Allowance Notification Date, Jun 04, 2020). -
Biopatch and Method of Preparing the Same (PCT/KR2016/005745), May 31, 2016.
Recent Five International Conference Presentations
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D.H. Park, S.J. Park, K.S. Nam, J.H. Byeon, J. Hwang, “Safe-by-design antimicrobials using plug-in aerosol doping system,” 2020 European Aerosol Conference (EAC), Aachen, Germany, Aug 30-Sep 4, (2019).
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D.H. Park, J. Hwang, and J.H. Byeon, “Steady uniform production of ultrasmall particles via tandem electrostatic system for precise antimicrobial activities,” 2019 AAAR Annual Conference (37th American Aerosol Conference), Portland, USA, Oct 14-18, (2019).
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D.H. Park, M. Gautam, S.J. Park, J. Hwang, J.O. Kim, and J.H. Byeon, “Ambient on-demand production of copper-doped tellurium nanoparticles for safer antimicrobial activity,” 2019 European Aerosol Conference (EAC), Gothenburg, Sweden, Aug 25-30, (2019).
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B.K. Poudel, K.O. Doh, and J.H. Byeon, “Ultrafast conversion of Ag nanoagglomerates into Ag2S nanodots via photoionization of Ag in thiol droplets,” 2018 IAC Conference (10th International Aerosol Conference), St. Louis, MO, USA, Sep 02-07, (2018).
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J.H. Byeon, “Reassembly of gold agglomerates through flowing drop reaction under 185-nm photoirradiation for chemothermal therapy,” 5th Nano Today Conference, Hawaii, HI, USA, Dec 06-10, (2017).
Invited Talks (11 Topics)
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Aerosol-Based Biomedical Engineering - Anticancer, Antimicrobial, and Antitransmission
: University of Nebraska, Lincoln, United of States, May 3, Biosystems Engineering, 2023 -
Plug-in Inorganic Nanoantibacterials
: Nano Korea 2020, KINTEX, S. Korea, July 01-03, I20Se_0015, 2020 -
Simulated Nanoparticle Assembly for Biological Assessment
: Korean Register of Shipping (KR), Busan, S. Korea, Dec 06, Machinery Technology Research Team, 2017 -
: Korean Association for Particle and Aerosol Research (KAPAR), Seoul, S. Korea, Feb 14, Yonsei University, 2019
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Aerosol processing to fabricate biofunctional nanoparticles: Contrast agents
: Korea Evaluation Institute of Industrial Technology (KEIT), Seoul, S. Korea, Nov 06, Creative Industry PD Group, 2015 -
Continuous self-assembly approach for fresh in situ fabrication of biofunctional nanocomposites: Controllable manufacturing system for built-to-order nanomedicine
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: Korean Association for Particle and Aerosol Research (KAPAR), Seoul, S. Korea, Nov 16, Yonsei University, 2018
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: Korea Institute of Industrial Technology (KITECH), Cheonan, S. Korea, June 15, Energy Conversions Technology Center, 2015
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: Korea Institute of Industrial Technology (KITECH), Yeongcheon, S. Korea, June 30, Biomedical Manufacturing Technology Center, 2015
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: Korean Society for Biomaterials (KSBM), Daegu, S. Korea, March 25, Kyungpook National University, 2016
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Gas-phase processing to fabricate nanoscale hybrid materials and their applications
: University of Missouri, Columbia, United of States, Apr 27-29, Mechanical and Aerospace Engineering, 2014 -
Aerosol-based processing to fabricate nanoscale hybrid materials and their applications
: ETH, Zurich, Switzerland, Apr 15-16, Mechanical and Process Engineering, 2014
: University of Michigan, Ann Arbor, MI, United States, May 9, Chemical Engineering, 2014
: Korea Institute of Industrial Technology (KITECH), Cheonan, S. Korea, May 13, Energy Conversions Technology Center, 2014
: OCI, Co. Ltd., Seongnam, S. Korea, May 14, R&D Center, 2014
: Sungkyunkwan University, Suwon, S. Korea, May 16, Mechanical Engineering, 2014
: Yonsei University, Seoul, S. Korea, May 19, Yonsei Institute of Green Technology, 2014
: Yeungnam University, Gyeongsan, S. Korea, May 19, Research Institute of Protein Sensor, 2014
: Korea Institute of Machinery & Materials (KIMM), Daegu, S. Korea, May 20, Daegu Fusion Technology Research Center, 2014
: Chungnam National University, Daejeon, S. Korea, May 21, Mechanical Engineering, 2014
: Chonbuk National University, Jeonju, S. Korea, May 21, Mechanical Design Engineering, 2014
: Yeungnam University, Gyeongsan, S. Korea, Jun 19, Mechanical Engineering, 2014
: Korea Institute of Science and Technology (KIST), Seoul, S. Korea, Jul 01, Center for Environment, Health and Welfare Research, 2014
: Rutgers University, Piscataway Township, Jul 18, Mechanical and Aerospace Engineering, 2014
: LG Electronics, Seoul, S. Korea, Aug 28, Gasan R&D Campus, 2014
: LG Chem, Daejeon, S. Korea, Aug 28, Research Park, 2014
: Korea Institute of Materials Science (KIMS), Changwon, S. Korea, Feb 05, Powder Technology Department, 2015 -
Aerosol-based fabrication of nanoscale materials and patterns
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: En'Urga Inc., West Lafayette, IN, United States, Feb 05, 2014
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: University of Iowa, Iowa City, IA, United States, Feb 07, National Institute of Environmental Health Sciences (NIEHS), 2014.
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: Northwestern University, Evanston, IL, United States, Feb 14, Materials Science and Engineering, 2014.
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Gas-phase materials processing as a green nanotechnology, Purdue University, West Lafayette, IN, United States, May 08, Environmental and Ecological Engineering, 2013.
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There's something in the air: Surface chemistry at aerosol nanoparticles, 243rd ACS National Meeting & Exposition, San Diego, CA, United States, Mar 25-29, ENVR-263, 2012.
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Synthesis and deposition of aerosol nanoparticles, Sungkyun Advanced Institute of Nano Technology (SAINT), Sungkyunkwan University (S. Korea), Apr 15, 2010.
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Aerosol-oriented environmental and material processes, 2nd Workshop for Next Generation Technology, Korea Association for Particle and Aerosol Research (KAPAR), Korea Institute of Machinery & Materials (S. Korea), Feb 26, 2008.
Korean Journal Articles (8)
Korean Technical Notes (7)
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오재호, 안상권, 황정호, 변정훈, "바이오 미세먼지 고속감지 소형시스템 개발," 공기청정기술 34 (2020) 28.
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박대훈, 황정호, 변정훈, “에어로졸 모사 제조 및 생물학적 영향 평가,” 공조 냉동 위생(한국설비기술협회지) 36 (2019) 70.
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황정호, 윤기영, 변정훈, 박재홍, 박철우, “은나노 입자가 코팅된 항균 필터를 이용한 바이오에어로졸 제어 기술,” 공기청정기술 20 (2007) 57.
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박철우, 변정훈, 고병주, 윤기영, 박재홍, 황정호, “악취물질의 저감기술,” 공기청정기술 19 (2006) 55.
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황정호, 변정훈, 박재홍, 윤기영, “저온플라즈마/광촉매 이용 공기청정 시스템,” 공기청정기술 18 (2005) 21.
Korean Patents (16-Applied, 95-Registered, and 2-Registered Trademark Rights)
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챔버 시스템(CHAMBER SYSTEM): 변정훈, 대한민국 특허출원번호 10-2024-0167903, 2024년 11월 22일.
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연관성 분석 시스템 및 이의 방법(NEXUS ANALYSIS SYSTEM AND METHOD THEREOF): 변정훈, 대한민국 특허출원번호 10-2024-0058880, 2024년 05월 03일.
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실시간 공기 중 미생물 검출 시스템(REAL-TIME AIRBORNE MICROORGANISM DETECTION SYSTEM): 변정훈, 대한민국 특허출원번호 10-2023-0166620, 2023년 11월 27일.
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궐련형 전자 담배 및 궐련-액상 하이브리드형 전자 담배(CIGA TYPE ELECTRONIC CIGARETTE APPRATUS AND CIGA-LIQUID HYBRID TYPE ELECTRONIC CIGARETTE APPARATUS): 변정훈, 대한민국 특허출원번호 10-2023-0113615, 2023년 08월 29일.
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니코틴 액적 제조 장치, 니코틴 액적 제조 방법 및 전자식 니코틴 전달 시스템(MANUFACTURING APPARATUS FOR NICOTINE DROPLET, MANUFACTURING METHOD FOR NICOTINE DROPLET PRODUCTION METHOD, AND ELECTRONIC NICOTINE DELIVERY SYSTEM): 변정훈, 대한민국 특허출원번호 10-2023-0081019, 2023년 06월 23일.
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나노약물전달체 제조 장치(NANO DRUG DELIVERY SYSTEM MANUFACTURING DEVICE): 변정훈, 대한민국 특허출원번호 10-2022-0174487, 2022년 12월 14일.
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전극, 이의 제조방법 및 이를 포함하는 정전기 방전 시스템(ELECTRODE, METHOD FOR MANUFACTURING OF THE SAME AND SYSTEM FOR DISCHARGING ELECTROSTATIC COMPRISING THE SAME): 변정훈 (90% 지분), 오재호, 대한민국 특허출원번호 10-2022-0092795, 2022년 07월 26일. [PCT 출원, 2022년 07월 26일]
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전극, 이의 제조방법 및 이를 포함하는 정전기 방전 시스템(ELECTRODE, METHOD FOR MANUFACTURING OF THE SAME AND SYSTEM FOR DISCHARGING ELECTROSTATIC COMPRISING THE SAME): 변정훈 (90% 지분), 오재호, 대한민국 특허출원번호 10-2022-0092791, 2022년 07월 26일. [PCT 출원, 2022년 07월 26일]
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95) 금속염화물 나노 건염이 포함된 마스크(MASK WITH METAL CHLORIDE NANO DRY SALT): 변정훈, 대한민국 특허등록번호 10-2739319, 2024년 12월 03일. [PCT 출원, 2021년 03월 18일]
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91) 마스크(MASK): 변정훈(100% 지분), 추병헌, 김호성, 임동욱, 전지호, 박준협, 공영민, 심경호, 이대엽, 송재경, 이창욱, 손명지, 박종민, 우종우, 박준환, 이재헌, 주성욱, 전익채, 김효찬, 대한민국 특허등록번호 10-2638588, 2024년 02월 15일.
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89) 바이오 에어로졸 검사장치 및 검사방법(BIO-AEROSOL INSPECTION APPARATUS AND INSPECTION METHOD): 변정훈(50% 지분), 황정호, 김형래, 안상권, 대한민국 특허등록번호 10-2556183, 2023년 07월 12일. [PCT 출원, 2020년 12월 24일]
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[상표등록] GRAS MASK ANTIVIRUS 및 ANTIVIRUS MASK NANO-DRY-SALT: 변정훈, 정준, 대한민국 상표등록공고번호 제 40-2022-0052943, 40-2022-0053982, 40-2022-0053456, 40-2022-0053983 및 대한민국 상표등록공고번호 제 40-2022-0052944, 40-2022-0053457, 40-2022-0053458, 40-2022-0053459, 2022년 05월 18일.
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87) 이산화탄소 저감장치(DEVICE FOR REDUCING CARBON DIOXIDE): 변정훈, 대한민국 특허등록번호 10-2385871, 2022년 04월 07일.
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82) 이동식 격리 시설(MOBILE ISOLATION FACILITY): 변정훈(50% 지분), 박재홍, 대한민국 특허등록번호 10-2268260, 2021년 06월 17일.
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73) 나노 복합체의 제조 장치, 나노 복합체의 제조 방법 및 이를 이용하여 제조한 나노 복합체(MANUFACTURING DEVICE OF NANOCOMPOSITES, METHOD OF PREPARING NANOCOMPOSITES AND NANOCOMPOSITE PREPARED THEREFROM): 변정훈, 대한민국 특허등록번호 10-2201471, 2021년 01월 06일.
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68) 부유균(Bioaerosol) 및 미세먼지(Particulate Matter) 측정 결과를 출력하기 위한 시스템 및 방법(SYSTEM AND METHOD FOR OUTPUTTING DETECTING RESULTS OF BIOAEROSOL AND PARTICULATE MATTER): 변정훈(67% 지분), 권준석, 김병민, 홍창현, 장민기, 신국호, 송민호, 박준효, 임재완, 김성재, 김진섭, 전규진, 송인덕, 김현수, 송명호, 이재근, 이종민, 대한민국 특허등록번호 10-2134747, 2020년 07월 10일.
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54) 액적 발생 장치 및 이를 포함하는 전자 담배(APPARATUS FOR GENERATING DROPLET AND ELECTRONIC CIGARETTE HAVING THE SAME): 변정훈, 대한민국 특허등록번호 10-1994554, 2019년 06월 24일. [PCT 출원, 2018년 12월 26일]
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43) 나노 복합체(NANOCOMPOSITE): 변정훈, 대한민국 특허등록번호 10-1865485, 2018년 05월 31일.
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38) 용접 로드(WELIDING ROD): 변정훈, 대한민국 특허등록번호 10-1844465, 2018년 03월 27일.
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35) 나노 입자 제조장치 및 나노 입자의 제조방법(DEVICE FOR MANUFACTURING NANO PARTICLE AND METHOD FOR MANUFACTURING NANO PARTICLE): 변정훈, 대한민국 특허등록번호 10-1835980, 2018년 02월 28일. [PCT 출원, 2017년 06월 12일]
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34) 나노 패턴 형성 장치 및 형성 방법(DEVICE FOR FORMING NANO PATTERN AND METHOD FOR FORMING NANO PATTERN): 변정훈, 대한민국 특허등록번호 10-1835978, 2018년 02월 28일. [PCT 출원, 2017년 06월 12일]
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31) 바이오 패치 및 그 제조방법(BIOPATCH AND METHOD OF PREPARING THE SAME): 변정훈, 대한민국 특허등록번호 10-1804953, 2017년 11월 29일. [PCT 출원, 2016년 5월 31일]
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30) 포터블 바이오 에어로졸 포집 장치 및 분석방법(PORTABLE BIO-AEROSOL COLLECTOR AND BIO-AEROSOL ANALYZING METHOD): 황정호, 박지운, 김형래, 변정훈(50% 지분), 대한민국 특허등록번호 10-1798601, 2017년 11월 20일. [PCT 출원, 2017년 09월 12일]
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29) 입자 코팅형 환편기 및 이를 이용하여 섬유상 입자를 코팅하는 방법(CONTINUOUS IN SITU PARTICLE DEPOSITING CIRCULAR KNITTING MACHINE AND METHOD THEREFOR): 이화조, 변정훈(60% 지분), 대한민국 특허등록번호 10-1793786, 2017년 10월 30일. [PCT 출원, 2016년 9월 20일]
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26) 무전해 도금 방법(METHOD OF ELECTROLESS PLATING): 변정훈, 대한민국 특허등록번호 10-1754795, 2017년 06월 30일.
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25) 바이오에어로졸 포집장치(BIO-AEROSOL CAPTURE DEVICE): 변정훈, 대한민국 특허등록번호 10-1754794, 2017년 06월 30일.
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21) 금속 에어로졸 나노입자 생성 및 고정 방법: 변정훈, 고병주, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0860590, 2008년 09월 22일.
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20) 항균유지장치: 윤기영, 변정훈, 박재홍, 황정호, 대한민국 특허등록번호 10-0860589, 2008년 09월 22일.
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19) 무전해도금용 촉매활성 방법: 변정훈, 고병주, 윤기영, 박재홍, 황정호, 대한민국 특허등록번호 10-0856873, 2008년 08월 29일.
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18) 촉매필터 제조방법 및 장치: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0854775, 2008년 08월 21일.
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17) 나노금속잉크 제조방법: 변정훈, 박재홍, 김상윤, 윤기영, 황정호, 대한민국 특허등록번호 10-0850771, 2008년 07월 31일.
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16) 탄소나노재료 패턴구현 제조방법: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0841093, 2008년 06월 18일.
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15) 상압조건하의 결정성 탄소 나노입자 생성 방법: 변정훈, 고병주, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0836260, 2008년 06월 02일.
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14) 광촉매 나노입자 발생을 이용한 유해가스 제거 방법: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0830670, 2008년 05월 13일.
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13) 금속 코팅된 광촉매 제조방법: 변정훈, 윤기영, 박재홍, 황정호, 대한민국 특허등록번호 10-0830669, 2008년 05월 13일.
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12) 디스크형 필터: 박재홍, 변정훈, 윤기영, 황정호, 대한민국 특허등록번호 10-0816509, 2008년 03월 18일.
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11) 기능성 나노입자 발생을 이용한 유해가스 제거 방법: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0816508, 2008년 03월 18일.
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10) 공기정화장치: 변정훈, 박재홍, 윤기영, 박철우, 황정호, 신대건, 정준오, 대한민국 특허등록번호 10-0769328, 2007년 10월 16일.
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9) 부유세균 및 미세입자의 동시 측정장치: 윤기영, 박동호, 변정훈, 박재홍, 황정호, 대한민국 특허등록번호 10-0764693, 2007년 10월 01일.
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8) 공기 청정장치: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0710693, 2007년 04월 17일.
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7) 환경칩: 황정호, 김용준, 윤기영, 변정훈, 박재홍, 임헌희, 맹좌영, 대한민국 특허등록번호 10-0710692, 2007년 04월 17일.
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5) 미립자 발생장치: 변정훈, 박재홍, 윤기영, 황정호, 대한민국 특허등록번호 10-0668784, 2007년 01월 08일.
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4) 공기순환식 유인 오존 살균시스템 및 방법: 황정호, 변정훈, 박재홍, 대한민국 특허등록번호 10-0625771, 2006년 09월 12일.
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3) 바이오하자드 안전 캐비닛 및 그 작동 제어 방법: 황정호, 변정훈, 박재홍, 대한민국 특허등록번호 10-0625769, 2006년 09월 12일.
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2) 미세입자와 유해가스의 동시 저감장치 및 방법: 황정호, 변정훈, 박재홍, 대한민국 특허등록번호 10-0527209, 2005년 11월 01일.
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1) 전기집진식 실내환기장치: 백영태, 변정훈, 박재홍, 황정호, 변준환, 이윤수, 대한민국특허등록번호, 10-0526300, 2005년 11월 08일.