808
Views
31
CrossRef citations to date
0
Altmetric
Reviews

In2O3- and SnO2-based Ozone Sensors: Design and Characterization

, &

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Mahsa Ghasemi, Fariborz Haghighat, Chang-Seo Lee & Marzieh Namdari. (2023) The effect of VOC and environmental parameters on ozone sensors performance. Advances in Building Energy Research 17:2, pages 172-192.
Read now

Articles from other publishers (30)

Maksim A. Solomatin, Marko Radovic, Alexander A. Petrunin, Demid A. Kirilenko, Alexey S. Varezhnikov, Georges Dubourg, Mikhail Yu. Vasilkov, Alexey M. Bainyashev, Andrea Nesterovic, Ilia Kiselev, Konstantin B. Kostin, Yuri P. Martynyuk, Alexander V. Gorokhovsky, Sergey S. Volchkov, Dmitry A. Zimnyakov, Nikolay M. Ushakov, Vladimir G. Goffman, Maxim K. Rabchinskii, Olga E. Glukhova & Victor V. Sysoev. (2023) Towards electronic smelling of ketones and alcohols at sub- and low ppms by pinky-sized on-chip sensor array with SnO2 mesoporous layer gradually engineered by near IR-laser. Chemical Engineering Journal, pages 145934.
Crossref
Alexander Karg, Justin Andreas Bich, Adrian Messow, Marco Schowalter, Stephan Figge, Andreas Rosenauer, Patrick Vogt & Martin Eickhoff. (2023) Nucleation Window of Ga 2 O 3 and In 2 O 3 for Molecular Beam Epitaxy on (0001) Al 2 O 3 . Crystal Growth & Design 23:6, pages 4435-4441.
Crossref
João R. Afonso, Mark Greiner, Petru Lunca-Popa, Jean-Pierre Raskin & Damien Lenoble. (2023) Ultra-low-energy catalytic degradation of ozone by off-stoichiometric delafossite Cu–Cr–O for highly selective low-temperature solid-state O3 sensors. Materials Today Advances 18, pages 100366.
Crossref
S. V. Ryabtsev, N. Yu. Obvintseva, D. A. A. Ghareeb, A. A. K. Al-Habeeb, A. V. Shaposhnik, S. Yu. Turishchev & E. P. Domashevskaya. (2023) Thin-Film Oxide Materials for Ozone Detection in Thermal Modulation Mode. Inorganic Materials 59:5, pages 487-493.
Crossref
Utkarsh Kumar, Yu-Ning Li, Zu-Yin Deng, Ping-Chang Chiang, B.C. Yadav & Chiu-Hsien Wu. (2022) Nanoarchitectonics with lead sulfide quantum dots for room-temperature real-time ozone trace detection with different light exposure. Journal of Alloys and Compounds 926, pages 166828.
Crossref
Tao Xu, Hao Zhang, Mao Ye, Yatong Zhu, Dundong Yuan, Wei Li, Yilong Zhou & Litao Sun. (2022) Controllable fabrication of hollow In 2 O 3 nanoparticles by electron beam irradiation . Nanoscale 14:35, pages 12569-12573.
Crossref
Pritamkumar V. Shinde, Nanasaheb M. Shinde, Shoyebmohamad F. Shaikh & Rajaram S. Mane. 2022. Tailored Functional Oxide Nanomaterials. Tailored Functional Oxide Nanomaterials 439 486 .
Nikolay P. Simonenko, Nikita A. Fisenko, Fedor S. Fedorov, Tatiana L. Simonenko, Artem S. Mokrushin, Elizaveta P. Simonenko, Ghenadii Korotcenkov, Victor V. Sysoev, Vladimir G. Sevastyanov & Nikolay T. Kuznetsov. (2022) Printing Technologies as an Emerging Approach in Gas Sensors: Survey of Literature. Sensors 22:9, pages 3473.
Crossref
Emmanouil Gagaoudakis, Viktor Kampitakis, Marilena Moschogiannaki, Angeliki Sfakianou, Thomas Anthopoulos, Leonidas Tsetseris, George Kiriakidis, George Deligeorgis, Fabrice Iacovella & Vasileios Binas. (2022) Low-energy consumption CuSCN-based ultra-low-ppb level ozone sensor, operating at room temperature. Sensors and Actuators A: Physical 338, pages 113462.
Crossref
Shirui Xue, Sicheng Cao, Zhaoling Huang, Daoguo Yang & Guoqi Zhang. (2021) Improving Gas-Sensing Performance Based on MOS Nanomaterials: A Review. Materials 14:15, pages 4263.
Crossref
Ghenadii Korotcenkov. (2021) Electrospun Metal Oxide Nanofibers and Their Conductometric Gas Sensor Application. Part 2: Gas Sensors and Their Advantages and Limitations. Nanomaterials 11:6, pages 1555.
Crossref
Ghenadii Korotcenkov & Vaclav Nehasil. (2021) Ozone Sensing by In2O3 Films Modified with Rh: Dimension Effect. Sensors 21:5, pages 1886.
Crossref
G. Korotcenkov, V. Brinzari & V. Nehasil. (2021) XPS study of Rh/In2O3 system. Surfaces and Interfaces 22, pages 100794.
Crossref
Ying Wang, Li Duan, Zhen Deng & Jianhui Liao. (2020) Electrically Transduced Gas Sensors Based on Semiconducting Metal Oxide Nanowires. Sensors 20:23, pages 6781.
Crossref
Akhil Chandran Mukkattu Kuniyil, Janez Zavašnik, Željka Cvejić, Sohail Sarang, Mitar Simić, Vladimir V. Srdić & Goran M. Stojanović. (2020) Performances and Biosensing Mechanisms of Interdigitated Capacitive Sensors Based on the Hetero-mixture of SnO2 and In2O3. Sensors 20:21, pages 6323.
Crossref
Xiu-Li Yang, Ming-Hua Xie, Wei Cai, Rong Shao, Rong-Bin Zang, Rong-Feng Guan & Yan Feng. (2020) Postmodified Dual Functional UiO Sensor for Selective Detection of Ozone and Tandemly Derived Sensing of Al 3+ . Analytical Chemistry 92:17, pages 11600-11606.
Crossref
Jae Hoon Bang, Myung Sik Choi, Ali Mirzaei, Seungmin Han, Ha Young Lee, Sun-Woo Choi, Sang Sub Kim & Hyoun Woo Kim. (2020) Hybridization of silicon nanowires with TeO2 branch structures and Pt nanoparticles for highly sensitive and selective toluene sensing. Applied Surface Science 525, pages 146620.
Crossref
Olubunmi Kolawole Akiode, Palanichamy Murugan, Abideen Idowu Adeogun, Gboyega Augustine Adebayo & Mopelola Abidemi Idowu. (2020) Structural evolution, electronic and physicochemical properties of tin ozonide nanoclusters: a density functional theory perspective. Journal of Nanoparticle Research 22:9.
Crossref
Ghenadii Korotcenkov. (2020) Current Trends in Nanomaterials for Metal Oxide-Based Conductometric Gas Sensors: Advantages and Limitations. Part 1: 1D and 2D Nanostructures. Nanomaterials 10:7, pages 1392.
Crossref
Lisa Petani, Liane Koker, Janina Herrmann, Veit Hagenmeyer, Ulrich Gengenbach & Christian Pylatiuk. (2020) Recent Developments in Ozone Sensor Technology for Medical Applications. Micromachines 11:6, pages 624.
Crossref
Daniele Ziegler, Paola Palmero & Jean-Marc Tulliani. (2020) W-doped indium oxide synthetized via hydrothermal route for low-temperature ozone sensing. Solid State Ionics 347, pages 115271.
Crossref
Sunil Kumar, Vladimir Pavelyev, Prabhash Mishra, Nishant Tripathi, Prachi Sharma & Fernando Calle. (2020) A review on 2D transition metal di-chalcogenides and metal oxide nanostructures based NO2 gas sensors. Materials Science in Semiconductor Processing 107, pages 104865.
Crossref
Daniele Ziegler, Andrea Marchisio, Paola Palmero, Diego Pugliese, Valentina Cauda & Jean-Marc Tulliani. (2019) ZnO thick films for NO2 detection: effect of different nanostructures on the sensors’ performances. Journal of Materials Science: Materials in Electronics 30:24, pages 20958-20969.
Crossref
Liming Liu, Ting Li, Zichuan Yi, Feng Chi, Zhidong Lin, Xiaowen Zhang & Kai Xu. (2019) Conductometric ozone sensor based on mesoporous ultrafine Co3O4 nanobricks. Sensors and Actuators B: Chemical 297, pages 126815.
Crossref
K. Brintakis, E. Gagaoudakis, A. Kostopoulou, V. Faka, A. Argyrou, V. Binas, G. Kiriakidis & E. Stratakis. (2019) Ligand-free all-inorganic metal halide nanocubes for fast, ultra-sensitive and self-powered ozone sensors. Nanoscale Advances 1:7, pages 2699-2706.
Crossref
R.K. Singh, R. Kumar, D.P. Singh, R. Savu & S.A. Moshkalev. (2019) Progress in microwave-assisted synthesis of quantum dots (graphene/carbon/semiconducting) for bioapplications: a review. Materials Today Chemistry 12, pages 282-314.
Crossref
G. Korotcenkov & V. Nehasil. (2019) The role of Rh dispersion in gas sensing effects observed in SnO2 thin films. Materials Chemistry and Physics 232, pages 160-168.
Crossref
Yina J. Onofre, Ariadne C. Catto, Sandrine Bernardini, Tomas Fiorido, Khalifa Aguir, Elson Longo, Valmor R. Mastelaro, Luís F. da Silva & Marcio P.F. de Godoy. (2019) Highly selective ozone gas sensor based on nanocrystalline Zn0.95Co0.05O thin film obtained via spray pyrolysis technique. Applied Surface Science 478, pages 347-354.
Crossref
Pritamkumar V. Shinde, Qi Xun Xia, Balaji G. Ghule, Nanasaheb M. Shinde, Jeong Seonghee, Kwang Ho Kim & Rajaram S. Mane. (2018) Hydrothermally grown α -MnO 2 interlocked mesoporous micro-cubes of several nanocrystals as selective and sensitive nitrogen dioxide chemoresistive gas sensors. Applied Surface Science 442, pages 178-184.
Crossref
Ghenadii Korotcenkov, Vladimir Brinzari & Moon-Ho Ham. (2018) In2O3-Based Thermoelectric Materials: The State of the Art and the Role of Surface State in the Improvement of the Efficiency of Thermoelectric Conversion. Crystals 8:1, pages 14.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.