Enhancing gas sensor performance via innovative synthesis and electronic structure tuning of highly porous nanomaterials고다공성 나노물질의 혁신적인 합성 및 전자 구조 튜닝을 통한 가스 센서 성능 향상

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1) bimetallic synergy, 2) heterojunction construction, and 3) catalysts loading approach. The sensing behavior of developed materials was investigated and also revealed by the theoretical calculations. In last, some critical challenges and future perspectives of chemiresistive materials for practical systems have been addressed in more depth. I believe this thesis ·will offer fundamental and useful guidance not only for the rational design of porous nanomaterials but also for practical gas detection applications in the foreseeable future.; With the rapid growth of industry, gas pollution has caused severe environmental problems. It specifically includes the leakage of explosive gases which can cause an explosion and toxic organic gases which is harmful to human health. It’s difficult to distinguish these gases by human sense because of some odorless gases such as $H_2$. In this sense, it is essential to find a way to distinguish these gases correctly and precisely. Hence, gas detection attracted attention worldwide nowadays. The existing types of gas sensors including infrared sensors, photoionization sensors, and chromatography sensors commonly required a complicated sensing system, which further limited the popular application of gas sensors. Considering this, chemo resistive gas sensors have been selected to overcome the above obstacles. In this thesis, I have introduced chemiresistive sensing systems along with their detailed working principles and outlined several recent advances in porous nanomaterial-based gas detection systems including (e.g. $H_2$, acetone). Afterward, the three strategies to develop high-performance porous nanomaterials were successively dealt with
Advisors
김일두researcher
Description
한국과학기술원 :신소재공학과,
Publisher
한국과학기술원
Issue Date
2023
Identifier
325007
Language
eng
Description

학위논문(박사) - 한국과학기술원 : 신소재공학과, 2023.8,[vii, 108 p. :]

Keywords

다공성 나노물질▼a전기방사▼aMOF 템플릿▼a열수▼a가스 센서▼a금속 산화물▼a수소▼a아세톤▼a헤테로접합▼a비귀금속 촉매; Porous nanomaterials▼aElectrospinning▼aMOF Templated▼aHydrothermal▼aGas sensor▼aMetal Oxides▼aHydrogen▼aAcetone▼aHeterojunction▼aNonnoble Metal Catalysts

URI
http://hdl.handle.net/10203/320890
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1047008&flag=dissertation
Appears in Collection
MS-Theses_Ph.D.(박사논문)
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