SensoGrafa
OUR STORY
Company was founded in 2020. Since then MB SensoGrafa was involved into various technological projects and has designed electrochemical devices and some electrochemistry related detection systems. Several high grade scientists and some smart junior researchers are working in the company, therefore, we with great interest are attending in a broad range of scientific/technological projects mainly based on Nanotechnology, Electrochemistry; Bioelectrochemistry; Optical sensing; Development of gas sensors; Development of biomedical devices; Investigation, development and application of nanomaterials.

OUR INNOVATIVE TECHNOLOGY
We provide smart electrochemical devices and electrochemical/optical/QCM setups for research groups and companies of all sizes, which require sensitive and well designed systems for various electrochemical applications. We are developing some modules and some important parts for scanning electrochemical microscopy.
Our company develops electrochemical devices (potentiostats, modules for scanning electrochemical microscopy) and new electrochemical analysis techniques, optical spectrophotometric systems and analysis methods based on spectrophotometric equipment, electrochemical systems for electrochemical modification of surfaces, scanning electrochemical microscopy based surface characterization techniques.
We can perform sophisticated electrochemical measurements by any modes of potentiostats, we can perform some optical and scanning electrochemical microscopy based measurements. We offer 3D printing based services.
We have great experience in project writing and/assessment and are offering this kind of service for companies, universities and research institutions.
We believe that the right understanding and technological edge can lead companies towards a successful realization of technological ideas. Contact us today to set up a meeting with one of our technology representatives, indicated below.
Meet the Team

Director
Prof. Habil. dr. Arunas Ramanavicius
Expert in Physical Chemistry; Bioanalytical Chemistry; Polymer Chemistry; Coauthor of over 400 Research papers, according to Google scholar h=83; total number of citations >23.400.
https://scholar.google.com/citations?user=KKba8vQAAAAJ&hl=lt&oi=ao
email: arunas.ramanavicius@ftmc.lt

Project manager / researcher
dr. Simonas Ramanavicius
Expert in Nanotechnology and Material Science; Inorganic chemistry; Gas sensors; Conducting polymers; 2D Nanomaterials; MXenes. Coauthor of over 40 Research papers, according to Google scholar h=27 total number of citations >2.500. https://scholar.google.com/citations?user=A-mSltkAAAAJ&hl=lt&oi=ao
email: simonas.ramanavicius@ftmc.lt

Junior researcher: PhD student 4-th Year
Greta Zvirzdine
Expert in Bioanalytical Chemistry; Polymer Chemistry; Conducting polymers; Coauthor of over 9 Research papers, according to Google scholar h=6 total number of citations >250.
https://scholar.google.com/citations?user=AWx_z44AAAAJ&hl=lt&oi=ao

Junior researcher: BS (Physics), MS (Scientific Computing / Physics)
Agne Ramanaviciute
Expert in Scientific computing; Molecular dynamics; Density functional theory (DFT); Development of gas sensors; Conducting polymers; 2D and 3D Nanomaterials; MXenes, Coauthor of 6 Research papers, according to Google scholar h=4 total number of citations >100.
https://scholar.google.com/citations?user=c-KaKGkAAAAJ&hl=lt&oi=ao

Engineer
Adomas Zvirzdinas
BS and MS in Engineering from Vilnius Gediminas Technical University. Expert in engineering, 3D printing.
Our Main Archievements
10 selected publications within 2022-2025
Coauthor of over 300 papers that according to Clarivate-WOS are totally cited over 17.000 times, recent h factor according to Clarivate-WOS is 68. Over 23000 citations and h factor 83 according to GoogleShoolar. All (over 500) publications are available at https://scholar.google.com/citations?user=KKba8vQAAAAJ&hl=lt&oi=ao
Our 10 major publications by within last 5 Years (from 2022):
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E. Mohsenzadeh, V. Ratautaite, E. Brazys, , S. Zukauskas, D. Plausinaitis, A. Ramanavicius. Design of Molecularly Imprinted Polymers (MIP) using Computational Methods: a Review of Strategies and Approaches. , 2024; 14:e1713 https://doi.org/10.1002/wcms.1713 (Q1 Impact Factor: 27.0)
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E. Brazys, V. Ratautaite, E. Mohsenzadeh, R. Boguzaite, A. Ramanaviciute, A. Ramanavicius, Formation of molecularly imprinted polymers: strategies applied for the removal of protein template (Review). , 103386 https://doi.org/10.1016/j.cis.2024.103386 (Q1 Impact Factor: 19.3)
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S. Ramanavicius, A. Ramanavicius, Development of Molecularly Imprinted Polymer based Phase Boundaries for Sensors Design (Review). Advances in Colloids and Interface Science 2022, 305, 102693. https://doi.org/10.1016/j.cis.2022.102693 (Q1 Impact Factor: 19.3)
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Adomaviciute-Grabusove, A. Popov, S. Ramanavicius, V. Sablinskas, K. Shevchuk, O. Gogotsi, I. Baginskiy, Y. Gogotsi, A. Ramanavicius. Monitoring Ti3C2Tx MXene Degradation Pathways Using Raman Spectroscopy. ACS Nano, 2024, 18, 13184−13195 DOI 10.1021/acsnano.4c02150 https://doi.org/10.1021/acsnano.4c02150 (Q1 Impact Factor: 16.0)
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J. Sarvutienė, U. Samukaite-Bubniene, S. Ramanavicius, A. Ramanavicius. Molecular imprinting technology for biomedical applications. Biotechnology Advances, 2024, 108318. https://doi.org/10.1016/j.biotechadv.2024.108318 (Q1 Impact Factor: 12.5)
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E. Mohsenzadeh, V. Ratautaite, E. Brazys, S. Ramanavicius, S. Zukauskas, D. Plausinaitis, A. Ramanavicius. Design of Molecularly Imprinted Polymers (MIP) using Computational Methods: a Review of Strategies and Approaches. Trends in Analytical Chemistry 2024, 171, 117480. https://doi.org/10.1016/j.trac.2023.117480 (Q1 Impact Factor: 12.0)
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V. Liustrovaite, V. Ratautaite, A. Ramanaviciene, A. Ramanavicius. Detection of the SARS-CoV-2 Nucleoprotein by Electrochemical Biosensor based on Self-Assembled Monolayer Supported Molecularly Imprinted Polypyrrole Formed on Gold Nanoparticle Modified Screen-Printed Electrode. 2025, 272, 17092. https://doi.org/10.1016/j.bios.2024.117092 (Q1 Impact Factor: 10.5)
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M. Poderyte, A. Valiūnienė, A. Ramanavicius. Scanning electrochemical microscope as a tool for the electroporation of living yeast cells. 2022, 205, 114096. https://doi.org/10.1016/j.bios.2022.114096 (Q1 Impact Factor: 10.5)
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M. Poderyte, A. Ramanavicius, A. Valiūnienė. Scanning electrochemical microscopy based irreversible destruction of living cells. Biosensors and Bioelectronics, 2022, 216, 114621 https://doi.org/10.1016/j.bios.2022.114621 (Q1 Impact Factor: 10.5)
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M. Drobysh, V. Ratautaite, E. Brazys, A. Ramanaviciene, A. Ramanavicius. Molecularly imprinted composite-based biosensor for the determination of SARS-CoV-2 nucleocapsid protein. , 2024, 251, 116043. (Q1 Impact Factor: 10.5)
The most Recent (2024) EU PATENT
A. Ramanavicius, S. Ramanavicius, U. Samukaite Bubniene, L. Sinkevicius, A. Ramanaviciene, METHOD OF MANUFACTURING AN ELECTROCHEMICAL CELL AND AN ELECTROCHEMICAL CELL. European Patent EP4202429. 2024 https://register.epo.org/application?number=EP21217822 // https://data.epo.org/publication-server/pdf-document?pn=4202429&ki=B1&cc=EP&pd=20240925
GET IN TOUCH
Kiparisų g. 29, Didžioji Riešė, Vilniaus r. sav. 14264, Lithuania
+37060032332