VU Chemijos ir geomokslų fakulteto publikacijos autoriaus 'Virgaudas Kubilius' publikacijų sąrašas

2023
1 Plaušinaitienė, Valentina; Murauskas, Tomas; Kubilius, Virgaudas; Skapas, Martynas; Stanionytė, Sandra; Selskis, Algirdas; Raudonis, Rimantas. Transparent and highly conductive La-doped strontium stannate thin film growth by PI-MOCVD method on LaAlO3 and MgO substrates of (100), (110), (111) orientations // Surfaces and interfaces. Amsterdam : Elsevier BV. ISSN 2468-0230. 2023, vol. 40, art. no.103035, p. 1-8. DOI: 10.1016/j.surfin.2023.103035. [DB: Science Citation Index Expanded (Web of Science), Scopus, ScienceDirect] [M. kr.: N 003]

2022
1 Murauskas, Tomas; Kubilius, Virgaudas; Raudonis, Rimantas; Skapas, Martynas; Plaušinaitienė, Valentina. Structure modification, evolution, and compositional changes of highly conductive La:BaSnO3 thin films annealed in vacuum and air atmosphere // Nanomaterials. Basel : MDPI. eISSN 2079-4991. 2022, vol. 12, no. 14, art. no. 2408, p. [1-13]. DOI: 10.3390/nano12142408. [DB: Science Citation Index Expanded (Web of Science), Scopus] [M. kr.: N 003]
2 Murauskas, Tomas; Kubilius, Virgaudas; Talaikis, Martynas; Abrutis, Adulfas; Raudonis, Rimantas; Niaura, Gediminas; Plaušinaitienė, Valentina. Precise composition control and cation nonstoichiometry in La-doped BaSnO3 thin films grown by MOCVD // Journal of alloys and compounds. Lausanne : Elsevier B.V. ISSN 0925-8388. eISSN 1873-4669. 2022, vol. 898, art. no. 162843, p. [1-8]. DOI: 10.1016/j.jallcom.2021.162843. [DB: Science Citation Index Expanded (Web of Science), Scopus] [M. kr.: N 003] [IF: 6.200; AIF: 6.033; Q1 (2022 InCities JCR SCIE)] [Aut. ind.: 0.142]

2020
1 Vagner, Milita; Plaušinaitienė, Valentina; Lukose, Rasuole; Keršulis, Skirmantas; Talaikis, Martynas; Knašienė, Birutė; Stanionytė, Sandra; Kubilius, Virgaudas; Motiejuitis, Karolis; Šaltytė, Zita; Niaura, Gediminas; Naujalis, Evaldas; Žurauskienė, Nerija. PI-MOCVD technology of (La, Sr)(Mn, Co)O3: From epitaxial to nanostructured films // Surface and coatings technology. Lausanne : Elsevier Science. ISSN 0257-8972. 2020, vol. 385, art. no. 125287, p. 1-8. DOI: 10.1016/j.surfcoat.2019.125287. [DB: Metals Abstracts, Current Contents, PASCAL/CNRS, Engineering Index, Scopus, Science Citation Index Expanded (Web of Science)] [M. kr.: N 002] [IF: 4.158; AIF: 4.962; Q1 (2020 InCities JCR SCIE)] [Aut. ind.: 0.076]
2 Vagner, Milita; Plaušinaitienė, Valentina; Lukose, Rasuole; Keršulis, Skirmantas; Talaikis, Martynas; Knašienė, Birutė; Stanionytė, Sandra; Kubilius, Virgaudas; Motiejuitis, Karolis; Šaltytė, Zita; Niaura, Gediminas; Naujalis, Evaldas; Žurauskienė, Nerija. PI-MOCVD technology of (La, Sr)(Mn, Co)O3: From epitaxial to nanostructured films // Surface and coatings technology. Lausanne : Elsevier Science. ISSN 0257-8972. 2020, vol. 385, art. no. 125287, p. 1-8. DOI: 10.1016/j.surfcoat.2019.125287. [DB: Metals Abstracts, Current Contents, PASCAL/CNRS, Engineering Index, Scopus, Science Citation Index Expanded (Web of Science)] [M. kr.: N 003] [IF: 4.158; AIF: 4.962; Q1 (2020 InCities JCR SCIE)] [Aut. ind.: 0.076]
3 Vagner, Milita; Plaušinaitienė, Valentina; Lukose, Rasuole; Keršulis, Skirmantas; Talaikis, Martynas; Knašienė, Birutė; Stanionytė, Sandra; Kubilius, Virgaudas; Motiejuitis, Karolis; Šaltytė, Zita; Niaura, Gediminas; Naujalis, Evaldas; Žurauskienė, Nerija. PI-MOCVD technology of (La, Sr)(Mn, Co)O3: From epitaxial to nanostructured films // Surface and coatings technology. Lausanne : Elsevier Science. ISSN 0257-8972. 2020, vol. 385, art. no. 125287, p. 1-8. DOI: 10.1016/j.surfcoat.2019.125287. [DB: Metals Abstracts, Current Contents, PASCAL/CNRS, Engineering Index, Scopus, Science Citation Index Expanded (Web of Science)] [M. kr.: T 008] [IF: 4.158; AIF: 4.962; Q1 (2020 InCities JCR SCIE)] [Aut. ind.: 0.076]

2019
1 Murauskas, Tomas; Kubilius, Virgaudas; Šaltytė, Zita; Plaušinaitienė, Valentina. Metalorganic chemical vapor deposition and investigation of nonstoichiometry of undoped BaSnO3 and La-doped BaSnO3 thin films // Thin solid films. Lausanne : Elsevier Science SA. ISSN 0040-6090. 2019, vol. 692, art. no. 137575, p. [1-6]. DOI: 10.1016/j.tsf.2019.137575. [DB: Chimica, Academic Search Premier, Compendex, Scopus, Science Citation Index Expanded (Web of Science)] [M. kr.: N 003] [IF: 2.030; AIF: 4.968; Q3 (2019 InCities JCR SCIE)] [Aut. ind.: 0.250]
2 Lukošė, Rasuolė; Plaušinaitienė, Valentina; Vagner, Milita; Žurauskienė, Nerija; Keršulis, Skirmantas; Kubilius, Virgaudas; Motiejuitis, Karolis; Knašienė, Birutė; Stankevič, Voitech; Šaltytė, Zita; Skapas, Martynas; Selskis, Algirdas; Naujalis, Evaldas. Relation between thickness, crystallite size and magnetoresistance of nanostructured La1−xSrxMnyO3±δ films for magnetic field sensors // Beilstein journal of nanotechnology. Frankfurt : Beilstein-Institut. ISSN 2190-4286. 2019, vol. 10, p. 256-261. DOI: 10.3762/bjnano.10.24. [DB: DOAJ, Science Citation Index Expanded (Web of Science), Scopus] [M. kr.: N 002] [IF: 2.612; AIF: 5.717; Q2 (2019 InCities JCR SCIE)] [Aut. ind.: 0.076]
3 Lukošė, Rasuolė; Plaušinaitienė, Valentina; Vagner, Milita; Žurauskienė, Nerija; Keršulis, Skirmantas; Kubilius, Virgaudas; Motiejuitis, Karolis; Knašienė, Birutė; Stankevič, Voitech; Šaltytė, Zita; Skapas, Martynas; Selskis, Algirdas; Naujalis, Evaldas. Relation between thickness, crystallite size and magnetoresistance of nanostructured La1−xSrxMnyO3±δ films for magnetic field sensors // Beilstein journal of nanotechnology. Frankfurt : Beilstein-Institut. ISSN 2190-4286. 2019, vol. 10, p. 256-261. DOI: 10.3762/bjnano.10.24. [DB: DOAJ, Science Citation Index Expanded (Web of Science), Scopus] [M. kr.: T 001] [IF: 2.612; AIF: 5.717; Q2 (2019 InCities JCR SCIE)] [Aut. ind.: 0.076]
4 Murauskas, Tomas; Plaušinaitienė, Valentina; Kubilius, Virgaudas. Barium stanate: PI-MOCVD thin film deposition and nonstoichiometry issues // Open readings 2019 : 62nd international conference for students of physics and natural sciences, March 19-22, 2019, Vilnius, Lithuania : abstract book. Vilnius : Vilnius University, 2019. ISBN 9786090701379. p. 174. Prieiga per internetą: <http://www.openreadings.eu/wp-content/uploads/2019/03/abstractbook19.pdf> [žiūrėta 2020-04-02]. [M. kr.: N 003]

2018
1 Žurauskienė, Nerija; Balevičius, Saulius; Stankevič, Voitech; Keršulis, Skirmantas; Klimantavičius, Jonas; Plaušinaitienė, Valentina; Kubilius, Virgaudas; Skapas, Martynas; Juškėnas, Remigijus; Navickas, Romualdas. Magnetoresistive properties of thin nanostructured manganite films grown by metalorganic chemical vapour deposition onto glass-ceramics substrates // Journal of materials science. New York : Springer. ISSN 0022-2461. eISSN 1573-4803. 2018, vol. 53, iss. 18, p. 12996-13009. DOI: 10.1007/s10853-018-2567-y. [DB: INSPEC, SpringerLink, Science Citation Index Expanded (Web of Science), Current Contents / Physical, Chemical & Earth Sciences, Current Contents / Engineering, Computing & Technology, Scopus] [M. kr.: T 008] [IF: 3.442; AIF: 4.951; Q2 (2018 InCities JCR SCIE)] [Aut. ind.: 0.100]
2 Žurauskienė, Nerija; Balevičius, Saulius; Stankevič, Voitech; Keršulis, Skirmantas; Klimantavičius, Jonas; Plaušinaitienė, Valentina; Kubilius, Virgaudas; Skapas, Martynas; Juškėnas, Remigijus; Navickas, Romualdas. Magnetoresistive properties of thin nanostructured manganite films grown by metalorganic chemical vapour deposition onto glass-ceramics substrates // Journal of materials science. New York : Springer. ISSN 0022-2461. eISSN 1573-4803. 2018, vol. 53, iss. 18, p. 12996-13009. DOI: 10.1007/s10853-018-2567-y. [DB: INSPEC, SpringerLink, Science Citation Index Expanded (Web of Science), Current Contents / Physical, Chemical & Earth Sciences, Current Contents / Engineering, Computing & Technology, Scopus] [M. kr.: N 002] [IF: 3.442; AIF: 4.951; Q2 (2018 InCities JCR SCIE)] [Aut. ind.: 0.100]
3 Žurauskienė, Nerija; Balevičius, Saulius; Stankevič, Voitech; Keršulis, Skirmantas; Klimantavičius, Jonas; Plaušinaitienė, Valentina; Kubilius, Virgaudas; Skapas, Martynas; Juškėnas, Remigijus; Navickas, Romualdas. Magnetoresistive properties of thin nanostructured manganite films grown by metalorganic chemical vapour deposition onto glass-ceramics substrates // Journal of materials science. New York : Springer. ISSN 0022-2461. eISSN 1573-4803. 2018, vol. 53, iss. 18, p. 12996-13009. DOI: 10.1007/s10853-018-2567-y. [DB: INSPEC, SpringerLink, Science Citation Index Expanded (Web of Science), Current Contents / Physical, Chemical & Earth Sciences, Current Contents / Engineering, Computing & Technology, Scopus] [M. kr.: T 001] [IF: 3.442; AIF: 4.951; Q2 (2018 InCities JCR SCIE)] [Aut. ind.: 0.100]