O
Oleksiy Gogotsi
Researcher at National Metallurgical Academy of Ukraine
Publications - 13
Citations - 496
Oleksiy Gogotsi is an academic researcher from National Metallurgical Academy of Ukraine. The author has contributed to research in topics: Fluidized bed & Capacitance. The author has an hindex of 4, co-authored 9 publications receiving 177 citations.
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Journal ArticleDOI
Scalable Synthesis of Ti3C2Tx MXene
Christopher E. Shuck,Asia Sarycheva,Mark Anayee,Ariana Levitt,Yuanzhe Zhu,Simge Uzun,Vitaliy Balitskiy,Veronika Zahorodna,Oleksiy Gogotsi,Yury Gogotsi +9 more
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High capacitance of coarse-grained carbide derived carbon electrodes
TL;DR: In this article, the authors reported exceptional electrochemical properties of supercapacitor electrodes composed of large, granular carbide-derived carbon (CDC) particles and used a titanium carbide (TiC) precursor to synthesize 70-250 μm sized particles with high surface area and a narrow pore size distribution.
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MXene nanoflakes decorating ZnO tetrapods for enhanced performance of skin-attachable stretchable enzymatic electrochemical glucose sensor.
Valerii Myndrul,Emerson Coy,Nataliya Babayevska,Veronika Zahorodna,Vitalii Balitskyi,Ivan Baginskiy,Oleksiy Gogotsi,Mikhael Bechelany,Maria Teresa Giardi,Igor Iatsunskyi +9 more
TL;DR: In this article , a skin-attachable and stretchable electrochemical sensor based on ZnO tetrapods and a new class of 2D materials - transition metal carbides, known as MXene, was developed and their electroanalytical behavior was tailored for continuous detection glucose in sweat.
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Tensile behaviors of Ti3C2Tx (MXene) films
Shaohong Luo,Shashikant P. Patole,Shoaib Anwer,Baosong Li,Thomas Delclos,Oleksiy Gogotsi,Veronika Zahorodna,Vitalii Balitskyi,Kin Liao +8 more
TL;DR: A systematic study of the tensile behavior of Ti3C2Tx films found that the relative sliding between Ti3 C2Tx flakes is the dominant deformation mechanism and the mechanical properties are found to be thickness dependent.
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Capacitance of coarse-grained carbon electrodes with thickness up to 800 μm
Liying Liu,Xuehang Wang,Vladimir Izotov,Dmytro Havrykov,Illia Koltsov,Wei Han,Yulia Zozulya,O. V. Linyucheva,Veronika Zahorodna,Oleksiy Gogotsi,Yury Gogotsi,Yury Gogotsi +11 more
TL;DR: In this article, a coarse-grained activated carbon (AC) was used to increase the areal capacitance of a supercapacitor to 7.4 cm2 at 5mV/s.