Subhabrata Banerjee
National Institute of Advanced Industrial Science and Technology (AIST), Indian Association for the Cultivation of Science, Banaras Hindu University
About
I,have done my Ph.D with Prof. Dr. Parthasarathi Dastidar in the inorganic Chemistry (in particular material science),from Indian Association for the Cultivation of Science (IACS), India, in more specific way the area of Supramolecular Chemistry and Crystal Engineering. Currently I am in a project in AIST, Japan (The National Institute of Advanced Industrial Science and Technology ), working in the area of silsesquioxane (POSS) and synthesis of zeolite .My PhD (completed August 2013) work was associated with the design and synthesis of metal-organic frameworks (MOFs) or coordination polymers (CPs) derived from chiral(peptide based)/ achiral bis-pyridyl-bis-amide/urea ligands. The goal of this research is to create novel chiral/achiral metal-organic frameworks (MOFs) or coordination polymers (CPs) that could separate a particular anion/cation from a complex mixture of anions/cations. Other various properties like, metallo-hydrogelation property, heterogeneous catalytic ability and photoluminescence property of such compounds was also investigated.
During my PhD tenure I have done extensive organic synthesis, crystallization of MOFs or CPs and their solid state studies (X-ray crystallography, Powder X-ray diffraction,SEM,TEM,TGA etc.).
Employment
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National Institute of Advanced Industrial Science and Technology (AIST) Post Doctoral Fellow2013 - Present
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Indian Association for the Cultivation of Science senior research fellow2009 - 2013
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Indian Association for the Cultivation of Science (IACS) junior research fellow2007 - 2009
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Central Salt and Marine Chemical Research Institute Junior research fellow2006 - 2007
Education
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Indian Association for the Cultivation of Science Ph.D (under University Of Calcutta)2007 - 2013
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Banaras Hindu University Master of science2003 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- 10) Remarkable Shape-sustaining, Load Bearing and Self-healing properties Displayed by A Supramolecular Gel Derived from a bis-pyridyl-bis-amide of L-phenyl Alanine Save
- 9) Primary ammonium monocarboxylate (PAM) synthon in designing supramolecular gels: A new series of chiral low molecular weight gelators derived from simple organic salts capable of generating and stabilizing gold nanoparticles Save
- 8) Studying fluorous interactions in a series of coordination compounds derived from mono- pyridyl ligands equipped with hydrogen bonding functionality: exploiting anion…F interaction in separating ClO4- anion from a competing mixture of anions Save
- 7) Anions as additive and template in tuning metallasupramolecular architecture in CuII coordination compounds derived from L-amino acid based chiral ligands Save
- 6) Solvent-Driven Structural Diversities in ZnII Coordination Polymers and Complexes Derived from Bis-pyridyl Ligands Equipped with a Hydrogen-Bond-Capable Urea Backbone Save
- 5) A New Series of CuII Coordination Polymers Derived from Bis-pyridyl-bis-urea Ligands and Various Dicarboxylates and Their Role in Methanolysis of Epoxide Ring Opening Catalysis Save
- 4) A Crystal Engineering Rationale in Designing A CdII Coordination Polymer Based Metallogel Derived from a C3 Symmetric Tris-amide-tris-carboxylate Ligand Save
- 3) Coordination polymers in selective separation of cations and anions: A series of rarely observed all helical 3-D coordination polymers derived from various chiral amino acid based bis-pyridyl-bis-amide lignads Save
- 2) Selective separation of sulphate anion by in situ crystallization of Cd(II) coordination compounds derived from bis-pyridyl ligands equipped with urea/amide hydrogen bonding backbone Save
- 1) An unprecedented all helical 3D network and a rarely observed non-interpenetrated octahedral network in homochiral Cu(II) MOFs: effect of steric bulk and π–π stacking interactions of the ligand backbone Save