테라헤르츠 영역에서 대기 중 수증기에 의한 전력 감쇠 및 해수 전지 분광학 연구
DC Field | Value | Language |
---|---|---|
dc.contributor.advisor | 전태인 | - |
dc.contributor.author | 박문원 | - |
dc.date.accessioned | 2022-06-23T08:58:53Z | - |
dc.date.available | 2022-06-23T08:58:53Z | - |
dc.date.created | 20220308093441 | - |
dc.date.issued | 2022 | - |
dc.identifier.uri | http://repository.kmou.ac.kr/handle/2014.oak/12976 | - |
dc.identifier.uri | http://kmou.dcollection.net/common/orgView/200000603058 | - |
dc.description.abstract | In this study, terahertz pulses were measured using a multipass cell with a propagation distance of 18.6 m while varying the water vapor density from 1.81 to 16.31. From the measured results, power attenuation curves of terahertz wave were derived and compared with the the recommendation of the Radiocommunication Sector of the International Telecommunication Union (ITU-R) P. 676–12 (08/2019). There was a difference between the measurement results and the ITU-R model, and to compensate for these differences, a newly modified pseudo-line was proposed by changing the center frequency, line strength, and line width parameters (2.740 THz, 31900 kHz/hPa, 400 GHz/hPa respectively). The calculated power attenuation by the proposed pseudo-line agreed well with the measurements of different WVDs. In addition, the validity of experimental results of this paper was confirmed by comparing them with the HITRAN database and other papers. Also, this thesis studied the formation of the SEI (Solid Electrolyte Interphase) layer before and after the charging/discharging process of seawater batteries using different electrolytes using Terahertz Time-Domain Spectroscopy. Although the SEI layer contributes to the stability of the battery, it consumes positive ions in the process, causing a decrease in storage capacity. As a result, it affects battery life. In this study, NS/C anode materials using different electrolytes were analyzed using power absorption coefficients, and SEI layer formation was detected through this. When the carbonate-based electrolyte was used, the power absorption coefficient was 61.85% higher than before the charge/discharge cycle, which means that the SEI layer was formed. On the other hand, in the case of using an ether-based electrolyte, since there is little difference before and after charging and discharging, it was confirmed that the SEI layer was not formed in the NS/C anode material using the ether-based electrolyte. | - |
dc.description.tableofcontents | 1. 서론 1 1.1 테라헤르츠 영역의 특성 1 1.2 수증기에 의한 전력 감쇠 1 1.3 해수 전지 2 2. 전파되는 THz 파의 전력 감쇠 연구 4 2.1 대기 중 수증기에 의한 전력 감쇠 계산 4 2.1.1 국제 전기 통신 연합 – 권장사항 4 2.1.2 고해상도 투과 분자 흡수 데이터베이스 10 2.2 실험 및 결과 15 2.2.1 실험 장비 15 2.2.2 측정 결과 18 2.3 분석 및 검증 22 2.3.1 ITU-R P.676-12 모델과의 차이 분석 22 2.3.2 HITRAN database를 이용한 감쇠 모델 검증 27 3. 해수 전지 음극 재료의 SEI층 형성 분광 연구 30 3.1 해수 전지용 장수명 음극 재료 30 3.1.1 고체 전해질 계면층(Solid Electrolyte Interphase layer) 30 3.1.2 나트륨 전지의 음극 재료 30 3.2 실험 및 결과 32 3.2.1 실험 장비 32 3.2.2 측정 결과 34 4. 결론 38 Reference 40 | - |
dc.language | kor | - |
dc.publisher | 한국해양대학교 대학원 | - |
dc.rights | 한국해양대학교 논문은 저작권에 의해 보호받습니다. | - |
dc.title | 테라헤르츠 영역에서 대기 중 수증기에 의한 전력 감쇠 및 해수 전지 분광학 연구 | - |
dc.title.alternative | Research on power attenuation by atmospheric water vapor in the terahertz region and THz spectroscopy of sea-water battery | - |
dc.type | Dissertation | - |
dc.date.awarded | 2022. 2 | - |
dc.embargo.liftdate | 2022-03-08 | - |
dc.contributor.alternativeName | Mun-Won Park | - |
dc.contributor.department | 대학원 전기전자공학과 | - |
dc.contributor.affiliation | 한국해양대학교 대학원 | - |
dc.description.degree | Master | - |
dc.identifier.bibliographicCitation | [1]박문원, “테라헤르츠 영역에서 대기 중 수증기에 의한 전력 감쇠 및 해수 전지 분광학 연구,” 한국해양대학교 대학원, 2022. | - |
dc.subject.keyword | Terahertz | - |
dc.subject.keyword | Spectroscopy | - |
dc.subject.keyword | Water vapor | - |
dc.subject.keyword | Power attenuation | - |
dc.subject.keyword | Sea-water battery | - |
dc.subject.keyword | Electrolyte | - |
dc.identifier.holdings | 000000001979▲200000002763▲200000603058▲ | - |
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