Alexander Rogachev | Synchrotron researches | Best Researcher Award

Mr. Alexander Rogachev | Synchrotron researches | Best Researcher Award

Dr. Alexander V. Rogachev is a researcher at the National Research Centre “Kurchatov Institute,” Moscow, Russia. His research primarily focuses on the synthesis and characterization of advanced materials, including luminescent ceramics and metal complexes. Key publications include studies on cerium-doped hydroxyapatite, tantalum complexes, and chalcogenide cluster complexes. With 82 citations across 21 documents, his work is notable in the fields of materials science and chemistry. His contributions include exploring the optical properties of crystals and the reactivity of transition metal complexes.

Publication profile

scholar

Alexander V. Rogachev: Scopus Profile Overview

šŸ”¬ Affiliation: National Research Centre “Kurchatov Institute,” Moscow, Russian Federation

šŸ“š Publications: 21 documents

šŸ” Citations: 82 citations across 64 documents

šŸ“ˆ h-index: 5

Research Interests:

  • Coordination Chemistry
  • Transition Metal Complexes
  • Optical Properties of Crystals
  • Synthesis of New Materials

Publication top notes

  1. Floating layers and thin films of mesogenic mix-substituted phthalocyanine holmium complex
    Authors: AV Kazak, MA Marchenkova, AI Smirnova, AY Seregin, AV Rogachev, …
    Journal: Thin Solid Films
    Year: 2020
    Citations: 23

 

  1. Self-organization of octa-phenyl-2,3-naphthalocyaninato zinc floating layers
    Authors: AV Kazak, M Marchenkova, T Dubinina, AI Smirnova, LG Tomilova, …
    Journal: New Journal of Chemistry
    Year: 2020
    Citations: 22

 

  1. Ultrathin Langmuirā€“Schaefer films of slipped-cofacial J-type phthalocyanine dimer: Supramolecular organization, UV/Vis/NIR study and nonlinear absorbance of femtosecond laser
    Authors: AV Kazak, MA Marchenkova, KS Khorkov, DA Kochuev, AV Rogachev, …
    Journal: Applied Surface Science
    Year: 2021
    Citations: 19

 

  1. Possibilities of X-Ray Absorption Spectroscopy in the Total External Reflection Geometry for Studying Protein Films on Liquids
    Authors: NN Novikova, SN Yakunin, MV Kovalā€™chuk, EA Yurā€™eva, ND Stepina, …
    Journal: Crystallography Reports
    Year: 2019
    Citations: 18*

 

  1. Structural characteristics of lysozyme Langmuir layers grown on a liquid surface from an oligomeric mixture formed during the early stages of lysozyme crystallization
    Authors: MV Kovalchuk, AS Boikova, YA Dyakova, KB Ilina, PV Konarev, …
    Journal: Thin Solid Films
    Year: 2019
    Citations: 18

 

  1. The Enhancement of Metal-Binding Properties in Hemoglobin: The Role of Mild Damaging Factors
    Authors: NN Novikova, MV Kovalchuk, EA Yurieva, OV Konovalov, ND Stepina, …
    Journal: The Journal of Physical Chemistry B
    Year: 2019
    Citations: 17

 

  1. Grazing-incidence small-angle X-ray scattering study of correlated lateral density fluctuations in W/Si multilayers
    Authors: KV Nikolaev, SN Yakunin, IA Makhotkin, J Rie, RV Medvedev, …
    Journal: Acta Crystallographica Section A: Foundations and Advances
    Year: 2019
    Citations: 12

 

  1. Total external reflection X-ray fluorescence analysis of protein-metal ion interactions in biological systems
    Authors: NN Novikova, MV Kovalchuk, EA Yurā€™eva, OV Konovalov, AV Rogachev, …
    Journal: Crystallography Reports
    Year: 2012
    Citations: 12*

 

  1. QEXAFS method implementation using adaptive X-ray optical elements
    Authors: AI Protsenko, AE Blagov, YV Pisarevskii, AV Rogachev, AV Targonsky, …
    Journal: Physics-Uspekhi
    Year: 2021
    Citations: 11*

Badie Ghavami | Condensed Matter Physics | Best Researcher Award

Ā  Dr . MANISHA RAJORIYA | Green Synthesis| Best Researcher Award

šŸ‘Øā€šŸ«Profile Summary

Highly accomplished researcher specializing in Condensed Matter Physics, Computational Physics, and Complex Systems. Extensive experience as a Researcher and Post-doctoral Research Fellow at renowned institutions such as the Institute for Research in Fundamental Sciences (IPM) and Sharif University of Technology. Expertise in quantum algorithms, quantum machine learning, superconductivity, quantum transport, and more. Proven track record of publications in esteemed journals and active participation in scientific conferences and workshops. Proficient in programming languages such as Python, Fortran, and C++, with expertise in simulation software including Quantum Espresso, Lammps, and GPAW. Passionate about advancing knowledge in computational physics and quantum technologies.

šŸŒ Professional Profiles

 

 

šŸ”¬ Research Experience:

2019ā€“Present: Researcher Iranian Center for Quantum Technologies (ICQTS), Quantum algorithm, quantum machine learning, superconductivity, quantum transport, spintronics, quantum optics, and photonics. Nanoscience school, Institute for Research in Fundamental Sciences (IPM),Programming and developing DFT/TDDFT, Machine learning, superconductivity, topological insulator, and quantum machine learning. 2016ā€“2019: Post-doctoral Research Fellow, Nano science school, Institute for Research in Fundamental Sciences (IPM), Tehran, Iran. Many-body, Condensed Matter, Quantum transport, Topological insulators. 2015ā€“2016: Post-doctoral Research Fellow Physics Department, Sharif University of Technology, Tehran, Iran. Condensed matter, Many-body systems, Complex Systems, Monte Carlo, Thermodynamics.

šŸ“š Education:

Ph.D. in Condensed Matter Physics and Computational Physics (2010 – 2015) Azarbaijan Shahid Madani University, Tabriz, Iran. M.Sc. in Physics (Condensed matter) (2005 – 2007) Bu-Ali Sina University, Hamedan, Iran. Bachelor in Physics (Condensed matter) (2000 – 2004) University of Kurdistan, Sanandaj, Iran. High-School (1994ā€“1998) Shahid Solaiman Khater High-School, Sanandaj, Kurdistan, Iran.

šŸŽ“ Theses:

Ph.D. Thesis: Investigation of electronic structure and quantum transport of Nano-Structure using Density Functional Theory (DFT). M.Sc. Thesis: Study of the steady state of One-Dimensional systems out of equilibrium using the matrix product method.

šŸŒ Language Skills:

  • English: Good
  • Kurdish: Native
  • Persian: Native

šŸ” Research Interests:

Computational physics, Complex systems, Quantum transport, Density functional theory, Many-body systems, Condensed matter, Statistical mechanics, Electrodynamics, Quantum open systems, Quantum optics, Quantum computing, Quantum information, etc.

šŸ“– Teaching Experience:

2018ā€“2019: Solid state physics, nanotechnology physics, Faculty of Materials Science and Engineering, Khajeh Nasir Toosi University of Technology, Tehran, Iran. 2007ā€“2015: Quantum Mechanics, Statistical Mechanics, Solid State Physics, Semiconductor Physics, Electronics Physics, Basic Physics, Physics Laboratory, University of Kurdistan, Kurdistan, Sanandaj, Iran. Basic Physics, Physics Laboratory, Islamic Azad University of Sanandaj, Kurdistan, Sanandaj, Iran. Quantum Mechanics, Statistical Mechanics, Solid State Physics, Semiconductor Physics, Electronics Physics, Basic Physics, Optics, Physics Laboratory, Pyame noor University, Kurdistan, Sanandaj, Iran.

šŸ“šTop Noted Publication

2. Optical absorption tensors based on C70 trimers and polymers
Authors: Elnaz Rostampour, Badie Ghavamiāˆ—, and Karin Larsson
Year: 2024

 

3. Transitions between non-convex to hyperbolic plasmonic regions in the Beryllene-Graphene-Beryllene trilayer structure
Authors: Badie Ghavamiāˆ—, Elnaz Rostampour, and Catherine Stampfl
Year: 2024

 

4. Quantum conductance of MoS2 armchair strained nanoribbons: a theoretical study
Authors: F. Tabatabaei, I. A. Sarsari, B. Ghavami, A. Bafekry, and C. Stampfl
Year: 2022

 

5. Charge transport in germanium doped phosphorene nanoribbon
Authors: M. Azizi, B. Ghavami
Year: 2018

 

6. Band gap tuning of hydrogen and oxygen passivated zigzag graphene monoxide nanoribbon: Ab-initio computations
Authors: M. Yaghoobi, A. Rastekar, J. Jahanbin, B. Ghavami, S. Afshari
Year: 2018

 

7. Varistor characteristics of a nano-device containing graphene and oxidized graphene: Verification by DFT+NEGF
Authors: B. Ghavami, A. Rastekar
Year: 2015

 

8. The quantum transport of pyrene and its silicon-doped variant: a DFT-NEGF approach
Authors: A. Rastkar, B. Ghavami, J. Jahanbin, S. Afshari, M. Yaghoobi
Year: 2015

 

9. Multi-switching behavior of hydrogen passivated silicene as molecular junction: A DFT-NEGF approach
Authors: J. J. Sardroodi, S. Afshari, A.R. Ebrahimzadeh, B. Ghavami, M.Y. Notash
Year: 2014

 

10. Perfect Transfer of Quantum States on Spin Chain with Dzyaloshinskii-Moriya interaction in inhomogeneous Magnetic field
Authors: S. Salimi, B. Ghavami, A. Sorouri
Year: 2010

 

11. The discontinuous phase transition for an exactly solvable one-dimensional creating-annihilation system
Authors: F.H. Jafarpour, B. Ghavami
Year: 2007

 

12. Phase transition in a three-states reaction-diffusion system
Authors: F.H. Jafarpour, B. Ghavami
Year: 2007