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Overview

Alexander Gaskov was affiliated with Lomonosov Moscow State University in the Russian Federation. Their research primarily focused on engineering and materials science, with a particular emphasis on electrical and electronic engineering and materials chemistry. The scientist's work spanned several subfields, including biomedical engineering, polymers and plastics, and environmental engineering.

The main topics of their research encompassed gas sensing nanomaterials and sensors, ZnO doping and related properties, advanced chemical sensor technologies, and transition metal oxide nanomaterials. Additional areas of interest included perovskite materials and applications, air quality monitoring and forecasting, and Ga2O3 and related materials.

Alexander Gaskov authored numerous papers. Notable recent publications included:

  • The Key Role of Active Sites in the Development of Selective Metal Oxide Sensor Materials (2021, Sensors)
  • Statistical shape analysis pre-processing of temperature modulated metal oxide gas sensor response for machine learning improved selectivity of gases detection in real atmospheric conditions (2020, Sensors and Actuators B Chemical)
  • Light Activation of Nanocrystalline Metal Oxides for Gas Sensing: Principles, Achievements, Challenges (2021, Nanomaterials)
  • ZnSe/NiO heterostructure-based chemiresistive-type sensors for low-concentration NO 2 detection (2020, Rare Metals)
  • Comparison of Au-functionalized semiconductor metal oxides in sensitivity to VOC (2020, Sensors and Actuators B Chemical)

The scientist frequently published in several journals and conference venues. These included:

  • Nanomaterials
  • Sensors and Actuators B Chemical
  • Sensors
  • Journal of Alloys and Compounds
  • Mendeleev Communications

Alexander Gaskov often collaborated with a set of coauthors. Their frequent coauthors included:

  • M. N. Rumyantseva
  • Artem Marikutsa
  • А. С. Чижов
  • Nikolay Khmelevsky
  • Е. А. Константинова

Best Publications

  • Structural Characterization of Nanocrystalline SnO2by X-Ray and Raman Spectroscopy

    L. Abello;B. Bochu;A. Gaskov;S. Koudryavtseva

  • Raman Surface Vibration Modes in Nanocrystalline SnO2: Correlation with Gas Sensor Performances

    Marina N. Rumyantseva;Alexander M. Gaskov;N. Rosman;T. Pagnier

  • Reduced graphene oxide (rGO) encapsulated Co3O4 composite nanofibers for highly selective ammonia sensors

    Qiuxia Feng;Qiuxia Feng;Xiaogan Li;Jing Wang;Alexander M. Gaskov

  • Reduced graphene oxide (rGO) decorated TiO2 microspheres for selective room-temperature gas sensors

    Xiaogan Li;Yangyang Zhao;Xueyan Wang;Jing Wang

  • Heterostructured p-CuO (nanoparticle)/n-SnO2 (nanowire) devices for selective H2S detection

    F. Shao;M.W.G. Hoffmann;M.W.G. Hoffmann;J.D. Prades;R. Zamani;R. Zamani

  • CuO/SnO2 thin film heterostructures as chemical sensors to H2S

    R.B Vasiliev;M.N Rumyantseva;N.V Yakovlev;A.M Gaskov

  • Visible-light activated room temperature NO2 sensing of SnS2 nanosheets based chemiresistive sensors

    Ding Gu;Xueyan Wang;Wei Liu;Xiaogan Li

  • Nanocomposites SnO2/Fe2O3: Sensor and catalytic properties

    M. Rumyantseva;V. Kovalenko;A. Gaskov;E. Makshina

  • Reduced graphene oxide hybridized with WS2 nanoflakes based heterojunctions for selective ammonia sensors at room temperature

    Xueyan Wang;Ding Gu;Xiaogan Li;Shiwei Lin

  • Reactivity of SnO2–CuO nanocrystalline materials with H2S: a coupled electrical and Raman spectroscopic study

    T Pagnier;M Boulova;A Galerie;A Gaskov

  • CO and NO2 gas sensitivity of nanocrystalline tin dioxide thin films doped with Pd, Ru and Rh

    O.V Safonova;O.V Safonova;G Delabouglise;B Chenevier;A.M Gaskov

  • The Key Role of Active Sites in the Development of Selective Metal Oxide Sensor Materials.

    Artem Marikutsa;Marina Rumyantseva;Elizaveta A. Konstantinova;Alexander Gaskov

  • Role of surface hydroxyl groups in promoting room temperature CO sensing by Pd-modified nanocrystalline SnO2

    Artem V. Marikutsa;Marina N. Rumyantseva;Lada V. Yashina;Alexander M. Gaskov

  • Surface chemistry of nanocrystalline SnO2: Effect of thermal treatment and additives

    V.V. Kovalenko;A.A. Zhukova;M.N. Rumyantseva;A.M. Gaskov

  • Light enhanced VOCs sensing of WS2 microflakes based chemiresistive sensors powered by triboelectronic nangenerators

    Ding Gu;Xiaogan Li;Huisheng Wang;Mingze Li

  • Dopants in nanocrystalline tin dioxide

    M. N. Rumyantseva;O. V. Safonova;M. N. Boulova;L. I. Ryabova

  • Nanocrystalline ZnO(Ga): Paramagnetic centers, surface acidity and gas sensor properties

    Nataliya Vorobyeva;Marina Rumyantseva;Darya Filatova;Elizaveta Konstantinova

  • Visible light activated room temperature gas sensors based on nanocrystalline ZnO sensitized with CdSe quantum dots

    A.S. Chizhov;M.N. Rumyantseva;R.B. Vasiliev;D.G. Filatova

  • Tungsten oxide reactivity versus CH4, CO and NO2 molecules studied by Raman spectroscopy

    M. Boulova;M. Boulova;A. Gaskov;G. Lucazeau

  • Chemical modification of nanocrystalline tin dioxide for selective gas sensors

    V V Krivetskiy;M N Rumyantseva;A M Gaskov

  • One-dimensional CuO–SnO2 p–n heterojunctions for enhanced detection of H2S

    Irina Giebelhaus;Elena Varechkina;Thomas Fischer;Marina Rumyantseva

  • Statistical shape analysis pre-processing of temperature modulated metal oxide gas sensor response for machine learning improved selectivity of gases detection in real atmospheric conditions

    Valeriy V. Krivetskiy;Matvei D. Andreev;Aleksandr O. Efitorov;Alexander M. Gaskov

  • Selective detection of individual gases and CO/H 2 mixture at low concentrations in air by single semiconductor metal oxide sensors working in dynamic temperature mode

    V. Krivetskiy;A. Efitorov;A. Arkhipenko;S. Vladimirova

Frequent Co-Authors

Artem M. Abakumov
Artem M. Abakumov Skolkovo Institute of Science and Technology
Joke Hadermann
Joke Hadermann University of Antwerp
Jordi Arbiol
Jordi Arbiol Catalan Institute of Nanoscience and Nanotechnology
Olga V. Safonova
Olga V. Safonova Paul Scherrer Institute
Elisabetta Comini
Elisabetta Comini University of Brescia
Irina I. Ivanova
Irina I. Ivanova Lomonosov Moscow State University
Joan Ramon Morante
Joan Ramon Morante Catalonia Institute for Energy Research
Shiwei Lin
Shiwei Lin Hainan University
Guido Faglia
Guido Faglia University of Brescia
Sanjay Mathur
Sanjay Mathur University of Cologne

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