Investigations of Different Ion Intercalations on the Performance of FBG Hydrogen Sensors Based on Pt/MoO3
α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-Mo...
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Published in | Sensors (Basel, Switzerland) Vol. 19; no. 21; p. 4775 |
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Main Authors | , , , , , , |
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Abstract | α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-MoO3 is experimentally investigated and discussed. It is concluded that the repeatability of the sensor depends on the radius of intercalated ions and amount of ionic bonds. The optimal ion species is Na+ and the optimal amount of precursor is 1 mmol. |
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AbstractList | α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-MoO3 is experimentally investigated and discussed. It is concluded that the repeatability of the sensor depends on the radius of intercalated ions and amount of ionic bonds. The optimal ion species is Na+ and the optimal amount of precursor is 1 mmol. α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-MoO3 is experimentally investigated and discussed. It is concluded that the repeatability of the sensor depends on the radius of intercalated ions and amount of ionic bonds. The optimal ion species is Na+ and the optimal amount of precursor is 1 mmol.α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-MoO3 is experimentally investigated and discussed. It is concluded that the repeatability of the sensor depends on the radius of intercalated ions and amount of ionic bonds. The optimal ion species is Na+ and the optimal amount of precursor is 1 mmol. α-MoO 3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of α-MoO 3 based hydrogen sensor restricts its practical application. In this paper, the effect of intercalated ion species and the amount in α-MoO 3 is experimentally investigated and discussed. It is concluded that the repeatability of the sensor depends on the radius of intercalated ions and amount of ionic bonds. The optimal ion species is Na + and the optimal amount of precursor is 1 mmol. |
Author | Roths, Johannes Zou, Tong Dai, Yutang Yang, Shiwen Yang, Minghong Wang, Gaopeng Dai, Jixiang |
AuthorAffiliation | 1 National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China; w32136@whut.edu.cn (G.W.); sherkyyang@163.com (S.Y.); djx409081947@163.com (J.D.); daiyt6688@whut.edu.cn (Y.D.) 2 Institute of Seismology, China Earthquake Administration, Wuhan 430071, China; Tong.zou@eqhb.gov.cn 3 Munich University of Applied Sciences, Lothstr. 34, D-80335 Munich, Germany; j.roths@hm.edu |
AuthorAffiliation_xml | – name: 2 Institute of Seismology, China Earthquake Administration, Wuhan 430071, China; Tong.zou@eqhb.gov.cn – name: 3 Munich University of Applied Sciences, Lothstr. 34, D-80335 Munich, Germany; j.roths@hm.edu – name: 1 National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China; w32136@whut.edu.cn (G.W.); sherkyyang@163.com (S.Y.); djx409081947@163.com (J.D.); daiyt6688@whut.edu.cn (Y.D.) |
Author_xml | – sequence: 1 givenname: Gaopeng surname: Wang fullname: Wang, Gaopeng – sequence: 2 givenname: Shiwen surname: Yang fullname: Yang, Shiwen – sequence: 3 givenname: Jixiang surname: Dai fullname: Dai, Jixiang – sequence: 4 givenname: Yutang surname: Dai fullname: Dai, Yutang – sequence: 5 givenname: Tong surname: Zou fullname: Zou, Tong – sequence: 6 givenname: Johannes orcidid: 0000-0001-6525-4544 surname: Roths fullname: Roths, Johannes – sequence: 7 givenname: Minghong surname: Yang fullname: Yang, Minghong |
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Snippet | α-MoO3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of... α-MoO 3 has been used as a hydrogen sensing material due to its excellent properties and unique crystalline layer structure. However, the low repeatability of... |
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SubjectTerms | Heat Hydrogen hydrogen sensors Investigations ion intercalation optimization Reagents repeatability Sensors Stainless steel α-moo3 |
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Title | Investigations of Different Ion Intercalations on the Performance of FBG Hydrogen Sensors Based on Pt/MoO3 |
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