수열합성법으로 유연기판에 성장된 Mg-doped ZnO(MZO) nanorods 의 전기⦁광학적 특성 연구
DC Field | Value | Language |
---|---|---|
dc.contributor.advisor | 장낙원 | - |
dc.contributor.author | 오재현 | - |
dc.date.accessioned | 2019-12-16T02:41:07Z | - |
dc.date.available | 2019-12-16T02:41:07Z | - |
dc.date.issued | 2016 | - |
dc.identifier.uri | http://repository.kmou.ac.kr/handle/2014.oak/11308 | - |
dc.identifier.uri | http://kmou.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002324799 | - |
dc.description.abstract | Recently, photodetector such as wearable optical sensor or portable photoconductive devices have been widely studied. And as global warming accelerates, the rate of harmful ultraviolet rays entering the earth is increasing, so photodetector research is underway to prevent diseases caused by ultraviolet rays. For the fabrication of flexible photodetector, hydrothermal methods which can grow at low temperature was introduced by using PES substrate. In order to grow Mg-doped ZnO (MZO) nanorods on amorphous plastic substrates, ZnO and MgZnO seed layer were deposited by a sputtering system and the characteristics of seed layer were analyzed according to the type of seed layer. ZnO nanorods were doped with Mg(NO3)2 and (CH3COO)2Mg precursor to dope Magnesium. And the precursor species and doping concentration were analyzed. We fabricated a flexible photodetector using MZO nanorods according to the growth time and analyzed structural, optical-electrical characteristics. The structural characteristics of the MZO nanorods grown on the ZnO seed layer were superior to those of the MgZnO seed layer. The structural and electrical properties of the MZO nanorods doped by Mg(NO3)2 precursors were excellent. The nanorods doped at 3 at.% using the Mg(NO3)2 precursor on the ZnO seed layer had the best electrical properties and are considered to be applicable to photodetectors. MZO nanorods photodetectors fabricated using Mg(NO3)2 precursors on the ZnO seed layer are most stable when grown for 2 hours. It is expected that a photodetector of better quality can be obtained by future electrode structure and process optimization. | - |
dc.description.tableofcontents | 목차 ------------------------------------------------ⅰ 표 목차 -------------------------------------------- ⅲ 그림 목차 -------------------------------------------ⅳ Abstract --------------------------------------------ⅶ 제 1 장 서론 ----------------------------------------1 제 2 장 이론적 배경 ---------------------------------3 2.1 나노 물질 ---------------------------------------3 2.1.1 나노 물질 특성 --------------------------------3 2.1.2 나노 물질 제조 --------------------------------6 2.2 Mg-doped ZnO(MZO)의 기본적 특성------------------9 2.2.1 구조적 특성 ----------------------------------10 2.2.2 전기적 특성 ----------------------------------12 제 3 장 실험 및 특성 측정 --------------------------14 3.1 씨앗층 제작 ------------------------------------14 3.1.1 Sputtering system ----------------------------14 3.1.2 ZnO 씨앗층 증착 ------------------------------15 3.1.3 MgZnO 씨앗층 증착 ----------------------------16 3.2 전극 형성 --------------------------------------17 3.3 MZO 나노막대 성장 ------------------------------18 3.3.1 수열합성법 시스템 ----------------------------18 3.3.2 시약 및 화학반응식 ---------------------------20 3.3.3 MZO 나노막대 성장 ----------------------------21 3.4 특성 평가 방법 ---------------------------------23 3.4.1 구조적 특성 평가 -----------------------------23 3.4.2 전기적 특성 평가 -----------------------------24 제 4 장 결과 및 고찰 -------------------------------27 4.1 씨앗층의 종류에 따른 MZO 나노막대의 특성 -------27 4.1.1 구조적 특성 ----------------------------------28 4.1.2 전기적 특성 ----------------------------------30 4.2 도핑 전구체의 종류에 따른 MZO 나노막대의 특성 --32 4.2.1 구조적 특성 ----------------------------------32 4.2.2 전기적 특성 ----------------------------------34 4.3 도핑 농도에 따른 MZO 나노막대의 특성 -----------36 4.3.1 구조적 특성 ----------------------------------36 4.3.2 전기적 특성 ----------------------------------39 4.4 MZO 나노막대 광검출기의 제작 -------------------41 4.4.1 MZO 나노막대의 시간에 따른 미세 구조 특성 ----44 4.4.2 MZO 나노막대의 광 응답 특성 ------------------45 제 5 장 결론 --------------------------------------47 참고문헌 -------------------------------------------49 | - |
dc.format.extent | 59 | - |
dc.language | kor | - |
dc.publisher | 한국해양대학교 대학원 | - |
dc.title | 수열합성법으로 유연기판에 성장된 Mg-doped ZnO(MZO) nanorods 의 전기⦁광학적 특성 연구 | - |
dc.type | Dissertation | - |
dc.date.awarded | 2017-02 | - |
dc.contributor.alternativeName | Jae-hyeon Oh | - |
dc.contributor.department | 대학원 전기전자공학과 | - |
dc.description.degree | Master | - |
dc.subject.keyword | nanorods, Mg-doped ZnO, Flexible device, Photodetector | - |
dc.type.local | Text | - |
dc.title.translated | A Study on Electrical-optical Characteristics of Mg-doped ZnO(MZO) Nanorods Grown on Flexible Substrate by Hydrothermal Methods. | - |
dc.identifier.holdings | 000000001979▲000000006780▲000002324799▲ | - |
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