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Name:
Dr. Sanjit Konar
Designation: Assistant
Professor
Department: Chemistry
E-Mail:
skonar@iiserb.ac.in
Phone:
+91-755-4092336
Fax:
+91-755-4092392
Academic
Profile:
- Assistant
Professor (October
2009-),Chemistry, Indian Institute of
Science Education and Research, Bhopal, India.
- Aexander von Humboldt
Fellow
(May 2008-October 2009), Universität
Bielefeld, Fakultät für
Chemie, Germany.
- Research
Associate
(September 2005-March 2008), at
the Department of Chemistry,Texas
A&M University, College Station, Texas, USA.
- Postdoctoral Research
Associate (April
2005-August 2005), at the Department of Chemistry,University of Arkansas, Fayetteville,
AR, USA.
- Postdoctoral Research
Associate
(April 2004- March 2005), at the Department of Chemistry,
University of Notre Dame, IN, USA.
- Ph.D (2004), Department of
Inorganic Chemistry, Indian Association for the Cultivation of Science(IACS), Jadavpur,
Kolkata.
Research
Interest:
·
Molecular Approach to Nanomagnets
·
Metal-Organic Frameworks for Materials
Application
- Polyoxometalates for Catalysis
- Nanoscopic Molecular Clusters and
Cages
Selected
Publications:
1. A
Three-dimensional homometallic molecular ferrimagnet
S. Konar, P. S. Mukherjee,
E. Zangrando, F. Lloret
and N Ray Chaudhuri,
Angew. Chem,
Int. Ed.,
2002, 41, 1561-1563.
2. Syntheses
of two new 1D and 3D networks of Cu(II) and Co(II)using malonate and urotropine
as bridging ligands :
crystal structure and magnetic studies
S. Konar, P. S. Mukherjee,
M.G. B. Drew, J. Ribas and N. Ray Chaudhuri,Inorg. Chem., 2003, 42, 2545-2552.
3. Structural
analyses and magnetic properties of two novel 3D networks of
Ni(II)- maleate and Mn(II)-adipate with
flexible bpe ligand
[bpe = 1,2 bis-(4-pyridyl)-ethane]
P. S. Mukherjee, S. Konar,
E. Zangrando, J. Ribas
and N. Ray Chaudhuri,
Inorg. Chem., 2003, 42, 2695-2703.
4. The
first unequivocally ferromagnetically coupled
squarato complex: origin of the
ferromagnetism in an interlocked 3D Fe (II) system
S. Konar, M. Corbella,
E. Zangrando, J. Ribas
and N. Ray Chaudhuri,
Chem. Commun., 2003,
1424-1425.
5. Syntheses,
structural analyses, and magneto–structural correlations of three
polymeric Fe(II) complexes with azide ligand S.
Konar, E. Zangrando,
M.G. B. Drew, T. Mallah, J. Ribas and N. Ray Chaudhuri,
Inorg. Chem., 2003, 42, 5966-5973.
6. Solid-State
transformation from self-assembled nanosheets
into ordered nanorods.
S. Konar and Z. Ryan Tian. Journal
of Physical Chemistry B, 2006, 110(9),4054-4057.
7. Oxo-, hydroxo-, and peroxo-bridged Fe(III) phosphonate cages
S. Konar, N. Bhuvanesh,
A. Clearfield. J.
Am. Chem. Soc., 2006,
128(30),
9604-9605.(Corresponding
author).
8. Site-specific
nucleation and growth kinetics in hierarchical nanosyntheses
of
branched ZnO crystallites T. Zhang, W. Dong,
M. K. Brewer, S.
Konar, R. N. Njabon, and Z. Ryan Tian J. Am. Chem. Soc.,
2006, 128(33),
10960-10968.
9. Synthesis
and characterization of four metal-organophosphonates
with 1, 2 and
3-dimensional structures S.
Konar, J. Zoń,
A. V. Prosvirin,K.
R. Dunbar and A. Clearfield Inorg. Chem., 2007, 46(13),
5229-5236.
10. Mixed-valent dodecanuclear
vanadium cluster encapsulating chloride anions and its reaction to form
a “Bowl”-shaped cluster S.
Konar, A. ClearfieldInorg. Chem., 2008, 47(9),
3492-3494. (Corresponding
author)
11. Solvothermal synthesis and characterization of two
high-nuclearity mixed-
valent manganese phosphonate clusters S. Konar,
A. Clearfield
Inorg. Chem., 2008, 47(9),
3489-3491. (Corresponding
author)
12. Synthesis
and characterization of high nuclearity iron(III) phosphonate
molecular clusters S.
Konar, A. Clearfield Inorg. Chem., 2008, 47(13),
5573-5579.
(Corresponding
author) [Featured
on Cover page]
13. Rare
Examples of µ-Nitrito-κ2O,O’: κO and
µ-Nitrito-κ2O,O’: κN Coordinating Modes in
Copper(II) Nitrite Complexes with Mono-Anionic Tridentate Schiff
Base Ligands: Structure, Magnetic
and Electrochemical Properties B. Sarkar , S. Konar,
C. J. Gómez García,
A. Ghosh,Inorg. Chem., 2008, 47 (24),
11611–11619.
14. Synthesis,
Structural and Magnetochemical Studies of
Iron Phosphonate Cages
based on {Fe3O}7+ Core S. Khanra, S. Konar,
A. Clearfield, M. Halliwell, E. J. L. McInnes, E. Tolis, F.
Tuna and R. E. P. Winpenny
Inorg. Chem., 2009, 48 (12),
5338–5349.
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