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Publications (2001-2025) |
R. S. Maurya, and T. P. Radhakrishnan* |
Chem. Eur. J. 2025, 31, e202404709 |
Molecular
Structural Control of the Amorphous-Crystalline Balance in Solids:
Structure-Phase Correlation in DADQs with Enhanced/ Switchable Fluorescence |
Niladri Sarkar* and T. P. Radhakrishnan* |
Adv. Opt. Mater. 2025, 13, 2402451 |
Single Source
Polychromatic Luminescent and White Emitting Copper Nanoclusters |
Anu Bovas and T. P. Radhakrishnan* |
J. Mater. Chem. A
(Communication) 2024, 12, 24872 |
Catalytic ‛Gelectrodes′ Based on Co and Ni-Fe Oxy/Hydroxides
for Sustainable and Enhanced Oxygen Evolution Reaction |
Nikita Mahajan and
T. P. Radhakrishnan* |
J. Mater. Chem. C 2024, 12, 13430 |
Tuning the
Fluorescence Emission of DADQ Based Molecular Solids by Dielectric
Environment Variation |
Anu Bovas and T. P. Radhakrishnan* |
ChemCatChem 2024, 16, e202400259 |
Electrocatalyst - Insulating Hydrogel Polymer
Nanocomposite Thin Films for Water Splitting |
G. Sasikanth, B. V. R. S. Subramanyam
and T. P. Radhakrishnan* |
J. Phys. Chem. C 2024, 128,
10818 [Also in the virtual special issue Celebrating the 25th
Anniversary of the CRSI] |
Efficient Humidity
Sensing and Stable Moisture Energy Generation with Emeraldine Base –
Poly(sodium 4-styrenesulphonate) Thin Film |
R. S. Maurya, N. Chaudhary, V. K. Rajput, P. Srujana, S. R. G. Naraharisetty
and T. P. Radhakrishnan* |
Adv. Opt. Mater. 2024, 2302279 (1-10) |
Direct Laser
Write-Read-Erase in a Functional Molecular Phase Change Material - Polymer
Nanocomposite Thin Film |
Anu Bovas, T. Dhanasekaran, K. Vijayamohanan
Pillai and T. P. Radhakrishnan* |
Chem. Eur. J. 2023, 29,
e202302593 (1-8) |
An In situ Fabricated Hydrogel Polymer
– Palladium Nanocomposite Electrocatalyst for
the HER: Critical Role of the Polymer in Realizing High Efficiency and
Stability |
G. Sasikanth, B. V. R. S. Subramanyam,
D. Maity, T. N. Narayanan and T. P. Radhakrishnan* |
J. Phys. Chem. C 2023, 127,
18107. |
Low Conductivity Polyaniline-Gold Nanocomposite via Interfacial
Polymerization: Efficient Humidity Sensing by Thin Films and Mechanistic
Insights through In situ Experiments |
T. Dhanasekaran, Anu Bovas and T. P. Radhakrishnan* |
ACS Appl. Mater.
Interfaces 2023, 15, 6687. |
Hydrogel Polymer – PBA Nanocomposite Thin Film Based Bifunctional
Catalytic Electrode for Water Splitting: Unique Role of the Polymer Matrix in
Enhancing the Electrocatalytic Efficiency |
T. P. Radhakrishnan |
Textbook
published: Royal Society of Chemistry, London, 2022 ISBN:978-1-83916-669-3 |
Core Concepts for a Course on Materials Chemistry |
R. S. Maurya, S. Jayanthi, C. G. Chandaluri and
T. P. Radhakrishnan* |
Chem. Mater. 2022, 34,
244 |
Monitoring Molecular Microparticles through
the Amorphous-to-Crystalline Transformation and Fluorescence
Enhancement/Tuning |
N. Senthilnathan, and T. P. Radhakrishnan* |
in Handbook of
Aggregation-Induced Emission, Vol. 2: Typical AIEgens
Design, Eds. Y. Tang and B. Z. Tang, Wiley, 2022, pages 97 –
118 |
Diaminodicyanoquinodimethanes: Fluorescence
Emission Enhancement in Aggregates and Solids |
G. Sasikanth, M. Durga Prasad and
T. P. Radhakrishnan* |
J. Chem. Sci. (Special
Issue: Beyond Classical Chemistry), 2021, 133, 96 (1-11) |
Polymer – metal Nanocomposite Thin Films Fabricated by a
Sputter-Anneal Process and Relevance of the Polymer Matrix |
N. Senthilnathan and T. P. Radhakrishnan* |
Chem. Mater. 2020, 32, 8567 |
Molecular Hopper Crystals and Electron Beam Triggered Actuation |
A. Ali, K, Gaurav, N. Senthilnathan, T. P. Radhakrishnan, Ch. Sasikala,
Ch. V. Ramana* |
J. Microbiol. Methods 2020, 177, 106019 |
“Sporotan” a New Fluorescent Stain
for Identifying Cryptic Spores of Rhodobacter johrii |
N. Senthilnathan, Kumar Gaurav, Ch. Venkata
Ramana* and T. P. Radhakrishnan* |
J. Mater. Chem. B 2020, 8, 4601 [also in the Themed Collection:
Journal of Materials Chemistry B
HOT Papers] |
Zwitterionic Small Molecule Based Fluorophores for
Efficient and Selective Imaging of Bacterial Endospores |
U. Divya Madhuri and T. P. Radhakrishnan* |
J. Phys. Chem. C 2020, 124, 44 |
In Situ-Fabricated
Hydrogel Polymer-Semiconductor Nanocomposite Thin Film as a Highly Efficient
and Robust Electrocatalyst for Hydrogen Evolution
Reaction |
Pagidi Sudhakar* and T.
P. Radhakrishnan* |
Chem. Asian J. 2019, 14, 4754 |
A Strongly
Fluorescent Molecular Material Responsive to Physical/ Chemical Stimuli and their
Coupled Impact |
Pagidi Sudhakar* and T.
P. Radhakrishnan* |
J. Mater. Chem. C 2019, 7, 7083 |
Stimuli Responsive
and Reversible Crystalline-Amorphous Transformation in a Molecular Solid: Fluorescence
Switching and Enhanced Phosphorescence in the Amorphous State |
U. Divya Madhuri and T. P. Radhakrishnan* |
ChemElectroChem 2019, 6, 1984 |
Insulating
Polymer-Hydrogel Nanocomposite Thin Film Based Catalytic Electrode for Oxygen
Evolution Reaction |
U. Divya Madhuri, Jony Saha and T. P. Radhakrishnan* |
ChemNanoMat 2018, 4, 1191 |
‘Dip
Catalysts’ Based on Polymer-Metal Nanocomposite Thin Films: Combining
Safe Fabrication with Efficient Application and Monitoring |
P. Srujana, Pagidi Sudhakar and T. P. Radhakrishnan* |
J. Mater. Chem. C 2018, 6,
9314 [also in
the Themed Collection: Recent Review Articles] |
Enhancement of
Fluorescence Efficiency from Molecules to Materials and the Critical Role of
Molecular Assembly |
P. Srujana and T. P. Radhakrishnan* |
Mater. Chem. Front. 2018, 2, 632 |
Impact of
Molecular Orientation on Fluorescence Emission Enhancement in Aggregates |
P. Srujana and T. P. Radhakrishnan* |
Chem. Eur. J. 2018, 24,1784 |
Establishing the Critical Role of Oriented Aggregation in Molecular Solid State Fluorescence Enhancement |
U. Divya Madhuri and T. P. Radhakrishnan* |
Dalton Trans. 2017, 46, 16236 |
Gold Nanoclusters with a Wide Range of Fluorescence Characteristics Generated In Situ in Polymer Thin Films: Potential Gas Sensing Application |
N. Senthilanathan, Ch. G. Chandaluri and T. P. Radhakrishnan* |
Scientific Reports 2017, 7, 10583 |
Efficient Bioimaging with Diaminodicyanoquinodimethanes: Epidermal and Stomatal Cell
Staining and Insight into the Molecular Level Interactions. |
Jony Saha*
and T. P. Radhakrishnan* |
Langmuir 2017, 33, 8372 |
Soft Chemical Fabrication of Iron-based Thin Film Electrocatalyst for Water Oxidation and Tuning the Structural and Electrochemical Attributes through Cerium Incorporation |
Lasya Maganti and T. P. Radhakrishnan* |
Chemistry Select 2017, 2, 7776 |
Poly(N-octadecylaniline)
Synthesized at the Air-Water Interface: Aligned Nanofibers and Gold
Nanocomposite Assembly via the Langmuir-Blodgett
Technique |
Lasya Maganti, Itisha Dwivedi, Anju Jose and T. P. Radhakrishnan* |
Mater. Res. Exp. 2017, 4, 075049 |
Nanocomposite of Hemicyanine LB
Film and Silver Nanoparticles : Contrasting Fluorescence Responses Sensitive
to the Ultrathin Film Assembly Sequence |
V. Kesava Rao, Pankaj Ghildiyal and T. P. Radhakrishnan* |
J. Phys. Chem. C 2017, 121, 1339 |
In Situ Fabricated Cu-Ag Nanoparticle - Embedded Polymer Thin Film as an
Efficient Broad Spectrum SERS substrate |
L. Maganti, S. Sharma and T. P. Radhakrishnan* |
in Molecular Materials: Preparation, Characterization and Applications, Eds. S. Malhotra, B. L. V. Prasad, J. Fraxedas, CRC Press, Boca Raton, 2017, pp. 3 - 27 |
Polyelectrolyte-templated Langmuir / Langmuir-Blodgett Films |
V. Kesava Rao and T. P. Radhakrishnan* |
Mater. Res. Bull.
2017, 87, 193 |
An Appraisal of
the Photocatalytic Application of Ag/AgCl Using an In Situ Fabricated Polymer
Nanocomposite Thin Film |
P. Srujana, Tarun Gera and T. P. Radhakrishnan* |
J. Mater. Chem. C 2016, 4, 6510 [also in the Themed Collection: 2016 Journal of Materials Chemistry C HOT Papers] |
Fluorescence
Enhancement in Crystals Tuned by a Molecular Torsion Angle: A Model to Analyze Structural Impact |
U. Divya Madhuri, V. Kesava Rao, E. Hariprasad and T. P. Radhakrishnan* |
Mater. Res. Exp. 2016, 3, 045018 |
In situ Fabricated Platinum – Poly(vinyl alcohol) Nanocomposite Thin Film : A Highly Reusable ‘Dip Catalyst’ for Hydrogenation |
V. Kesava
Rao and T. P. Radhakrishnan* |
ACS App. Mater.
Interfaces 2015, 7, 12767 |
Tuning the SERS
Response with Ag-Au Nanoparticle – Embedded Polymer Thin Film
Substrates |
P.
Srujana and T. P. Radhakrishnan* |
Angew. Chem. Int. Ed. 2015, 54, 7270 |
Extensively Reversible Thermal Transformations of a Bistable, Fluorescence Switchable Molecular Solid: Entry into Functional Molecular Phase Change Materials |
L.
Maganti, M. Jash, A. Nair
and T. P. Radhakrishnan* |
Phys. Chem. Chem. Phys. 2015, 17, 7386 |
Nanoparticle Assembly Following Langmuir-Hinshelwood Kinetics on a Langmuir Film and Chain Networks Captured in LB Films |
E.
Hariprasad and T. P. Radhakrishnan* |
in Nanocomposites: In Situ Synthesis of
Polymer-Embedded Nanostructures, Eds. G. Carotenuto and L. Nicolais,
John Wiley and Sons 2013, p.129 |
Chemistry Inside a Polymer Thin Film: In Situ Soft Chemical Synthesis of Metal Nanoparticles and Applications |
E.
Hariprasad and T. P. Radhakrishnan* |
Langmuir 2013, 29, 13050 |
In situ Fabricated Polymer-Silver Nanocomposite Thin Film as an Inexpensive and Efficient Substrate for Surface Enhanced Raman Scattering |
V.
Kesava Rao and T. P. Radhakrishnan* |
J.
Mater. Chem. A 2013,
1, 13612 |
Hollow Bimetallic Nanoparticles Generated in situ Inside a Polymer Thin Film: Fabrication and Catalytic Application of Silver-Palladium-Poly(vinyl alcohol) |
Ch.
G. Chandaluri and T. P. Radhakrishnan* |
J.
Mater. Chem. C 2013,
1, 4464 |
Hierarchical Assembly of a Molecular Material through the Amorphous Phase and the Evolution of its Fluorescence Emission |
B. Balaswamy,
L. Maganti, S. Sharma and T. P. Radhakrishnan* |
Langmuir 2012, 28, 17313 |
Mechanical Control of Molecular Aggregation and Fluorescence Switching/ Aggregation in an Ultrathin Film |
Ch.
G. Chandaluri and T. P. Radhakrishnan* |
Angew. Chem. Int. Ed. 2012, 51, 11849 |
Amorphous-to-Crystalline Transformation with Fluorescence Enhancement and Switching of Molecular Nanoparticles Fixed in a Polymer Thin Film |
T.
P. Radhakrishnan |
AIP
Conf. Proc. 2012,
1447, 21 |
Polymer-metal Nanocomposite Thin Films: In Situ Fabrication and Applications |
E.
Hariprasad and T. P. Radhakrishnan* |
ACS Catalysis 2012, 2, 1179 |
Palladium Nanoparticle-Embedded Polymer Thin Film ‘Dip Catalyst’ for Suzuki-Miyaura Reaction |
A.
Patra,* Ch. G. Chandaluri and T. P. Radhakrishnan* |
Nanoscale 2012, 4, 343 |
Optical Materials Based on Molecular Nanoparticles |
G.
V. Ramesh, M. Durga Prasad and T. P. Radhakrishnan* |
Chem. Mater. 2011, 23, 5231 |
Mercury Nanodrops and Nanocrystals |
Ch.
G. Chandaluri and T. P. Radhakrishnan* |
Opt. Mater. 2011, 34, 119 |
Zwitterionic Diaminodicyanoquinodimethanes
with Enhanced Blue-Green Emission in the |
S.
Porel, D. Ramakrishna, |
Curr. Sci. 2011, 101, 927 (Special Section: Chemistry –Structure, Synthesis
and Dynamics) |
Polymer Thin Film with In Situ Synthesized Silver Nanoparticles as a Potent Reusable Bactericide |
G.
V. Ramesh and T. P. Radhakrishnan* |
ACS Appl. Mater. Interfaces 2011, 3, 988 |
A Universal Sensor for Mercury (Hg, HgI, HgII) Based on Silver Nanoparticle – Embedded Polymer Thin Film |
K.
Rajesh, B. Balaswamy, K. Yamamoto, H. Yamaki, J. Kawamata and T. P. Radhakrishnan* |
Langmuir 2011, 27, 1064 |
Enhanced Optical and Nonlinear Optical Responses in a Polyelectrolyte Templated Langmuir-Blodgett Film |
E.
Hariprasad and T. P. Radhakrishnan* |
Chem. Eur. J. 2010, 16, 14378 |
A Highly Efficient and Extensively Reusable ‘Dip Catalyst’ Based on Silver Nanoparticle - Embedded Polymer Thin Film |
Ch.
G. Chandaluri, A. Patra and T. P. Radhakrishnan* |
Chem. Eur. J. 2010, 16, 8699 |
Polyelectrolyte-Assisted Formation of Molecular Nanoparticles Exhibiting Strongly Enhanced Fluorescence |
K. Rajesh, B. Sreedhar and T. P. Radhakrishnan* |
ChemPhysChem 2010,
11, 1780 |
Assembly of Gold Nanoparticles on a Molecular Ultrathin
Film: Tuning the Surface Plasmon Resonance |
K. Rajesh, K. Rajendra,
T. P. Radhakrishnan* |
J. Phys. Chem. B 2010, 114, 849 |
Fluorescence
Enhancement in Langmuir-Blodgett Films: Role of Amphiphile
Structure, Orientation and Assembly |
G. V. Ramesh, B. Sreedhar,
T. P. Radhakrishnan* |
Phys. Chem. Chem. Phys. 2009, 11,
10059 |
Real Time
Monitoring of the In Situ Growth of Silver Nanoparticles in a
Polymer Film under Ambient Conditions. |
G. V. Ramesh, |
Chem. Soc. Rev. 2009, 38, 2646 |
Polymer Thin Films Embedded with In Situ Grown Metal Nanoparticles |
K. Rajesh and T. P. Radhakrishnan* |
Chem. Eur. J.
2009, 15, 2801 |
Optical Response Sensitive to the Assembly in a Molecular
Material: Ultrathin Film with a Vanishing Electronic Absorption |
A. Patra and T. P. Radhakrishnan* |
Chem. Eur. J.
2009, 15, 2792 |
Molecular
Materials with Contrasting Optical Responses from a Single Pot Reaction and Fluorescence Switching in a Carbon Acid |
G.
V. Ramesh, K. Sudheendran, K. C. James Raju,* B. Sreedhar and T.
P. Radhakrishnan* |
J. Nanosci. Nanotech. (Special Issue on: Advanced Materials for Nanoscience
and Nanotechnology) 2009, 9, 261 |
Microwave Absorber Based on Silver Nanoparticle –
Embedded Polymer Thin Film |
R.
K. Kamlekar, M. S. Chandra, T. P. Radhakrishnan and M. J. Swamy* |
Biophys.
Chem. 2009, 139, 63 |
Interaction of N-myristoylethanolamine with Cholesterol Investigated in a
Langmuir Film at the Air-water Interface |
A.
Patra, N. Venkatram, D. |
J. Phys. Chem. C 2008, 112, 16269 |
Optical Limiting in Organic Molecular Nano/Microcrystals: Nonlinear Optical Effects Dependent on Size Distribution |
A. Patra, K. Rajesh and T. P. Radhakrishnan* |
Bull. Mater.
Sci. 2008, 31, 421 |
Optical Materials
Based on Molecular Nano/microcrystals and Ultrathin Films |
M.
Jaya Prakash, P. Raghavaiah, Y. S. R. Krishna and
T. P. Radhakrishnan* |
Angew. Chem. Int. Ed. 2008, 47, 3969 |
Growing Molecular |
T.
P. Radhakrishnan |
Acc. Chem. Res. 2008, 41, 367 |
Molecular Structure, Symmetry and Shape as Design Elements
in the Fabrication of Molecular |
A.
Patra, N. Hebalkar, B. Sreedhar
and T.
P. Radhakrishnan* |
J. Phys. Chem.
C 2007, 44, 16184 |
Formation and Growth of Molecular Nanocrystals Probed by their Optical Properties |
S.
Philip Anthony, M. Jaya Prakash and T.
P. Radhakrishnan* |
Mol. Cryst. Liq. Cryst. 2007, 473, 67 |
C2-symmetric Bis(amide)
Molecules : Solid State Assembly, Thermal Stability and Second Harmonic
Generation |
S. Porel, T. P. Radhakrishnan* |
Adv. Funct. Mater. 2007, 17, 2550 |
Palladium Nanowire
from Precursor Nanowire : |
A.
Patra, S. Philip Anthony and T. P. Radhakrishnan* |
Adv. Funct. Mater. 2007, 17, 2077 |
Tris(4-cyanophenyl)amine : Simple Synthesis
via Self-assembly; Strong Fluorescence in Solution, Nano/microcrystals and
Solid |
S. Porel,
N. Venkatram, D. Narayana Rao and T. P. Radhakrishnan* |
J. Appl. Phys. 2007, 102, 033107 |
Optical Power Limiting in the Femtosecond Regime by Silver Nanoparticle – Embedded Polymer Film |
K.
Rajesh, M. Sharath Chandra, S. Hirakawa,
J. Kawamata and T.
P. Radhakrishnan* |
Langmuir 2007, 23, 8560 |
Polyelectrolyte Templating Strategy for the Fabrication of Multilayer Hemicyanine LB Films Showing Enhanced and Stable SHG |
S. Porel, N. Venkatram, D. Narayana Rao and T. P.
Radhakrishnan* |
J. Nanosci. Nanotech. 2007, 7, 1887 |
In situ Synthesis of Metal Nanoparticles in Polymer Matrix and Optical Limiting Application |
M. Jaya Prakash
and T. P. Radhakrishnan* |
Inorg.
Chem. 2006, 45, 9758 |
SHG Active Crystals of a Remote Functionalized Achiral
NLO-phore Assembled through Zinc(II) Complexation |
M. Jaya Prakash and T. P. Radhakrishnan* |
Chem. Mater. 2006, 18, 2943 |
Second Harmonic Generation from a Homologous Series of
Molecular |
A. Patra,
N. Hebalkar, B. Sreedhar, M. Sarkar, A. Samanta and T. P. Radhakrishnan* |
Small 2006, 2, 650 |
Tuning the Size and Optical Properties in Molecular Nano/Microcrystals : Manifestation of Hierarchical Interactions |
M. S. Chandra and T. P. Radhakrishnan* |
Chem. Eur. J. 2006,
12, 2982 |
Polyelectrolytte Templated Polymerization in Langmuir Film : Nanoscopic Control of Polymer Chain Organization |
S. Philip Anthony, S. Porel, D. Narayana Rao and T. P. Radhakrishnan* |
Pramana – Journal
of Physics (Special Issue on Nanoscience and Technology) 2005, 65,
871 |
Thin Films of Metal-Organic Compounds and Metal
Nanoparticle-Embedded Polymers for Nonlinear Optical Applications |
S. Philip Anthony, K. Basavaiah and T. P. Radhakrishnan* |
Cryst. Growth &
Design (Communication) 2005, 5, 1663 |
Chiral Vicinal Bis(amide)
Molecules : Polar / Helical Assemblies in Crystals and Second Harmonic Generation. |
M. Jaya Prakash and T. P. Radhakrishnan* |
Cryst. Growth & Design 2005, 5, 1831 |
Remote
Functionalized Nonlinear Optical Chromophore : Optimal Assembly for Second
Harmonic Generation in the |
M. S. Chandra, M. G. Krishna, H. Mimata, J. Kawamata, T. Nakamura and T. P. Radhakrishnan* |
Adv. Mater.
2005, 17, 1937 |
Laser induced SHG Decay in a Langmuir-Blodgett Film : Arresting by Polyelectrolyte Templating |
G. K. Prasad, T. P. Radhakrishnan,* D. S. Kumar and M. G. Krishna |
Sensors & Actuators B 2005, 106,
626 |
Ammonia Sensing Characteristics of Thin Film Based on Polyelectrolyte Templated Polyaniline |
S. Porel, |
Chem. Commun. 2005,
2387 |
Polygonal Gold Nanoplates in a Polymer Matrix |
K. Srinivas, T. P. Radhakrishnan* |
J. Mater. Chem. 2005, 15, 965 |
First hyperpolarizability of some donor-acceptor 3D molecules : noncentrosymmetric crystal through conformational flexibility |
M. Jaya Prakash and T. P. Radhakrishnan* |
Cryst. Growth & Design
2005, 5, 721 |
Noncentrosymmetric and SHG Active Salts of 4-Nitrophenolate with H-bonded Helical Formations |
S. Philip Anthony N. K. M. Naga Srinivas, D. Narayana Rao and T. P. Radhakrishnan* |
J. Mater. Chem. (Communication) 2005,
15, 739 |
Thin Films of Perfectly Polar Crystallites with Uniaxial Orientational Ordering |
S. Porel, S. Singh, S. Sree Harsha, |
Chem. Mater. (Communication) 2005, 17,
9 |
Nanoparticle-embedded Polymer : In situ Synthesis, Free-standing Films with Highly Monodisperse Silver Nanoparticles and Optical Limiting. |
M. Sharath Chandra, Y. Ogata, J. Kawamata and T. P. Radhakrishnan* |
J. Nonlin. Opt. Phys. Mater.
2004, 13, 347 |
Enhanced SHG in Polyelectrolyte Complexed Hemicyanine Dye Langmuir-Blodgett Films. |
S. Philip Anthony and T. P. Radhakrishnan* |
Cryst. Growth &
Design (Special Issue : Polymorphism in |
Coordination Polymers of Cu(I) with a Chiral Push-pull Ligand : Hierarchical Network Structures and SHG |
D. N.
Rao,* N. K. M. Naga Srinivas, P. Gangopadhyay and T. P. Radhakrishnan* |
J. Phys. Chem. A 2004, 108, 5213. |
Internal Cancellation of Electric Field Induced Second Harmonic Generation in Solvent Mixtures and Solutions : An Efficient Protocol for Determination of Molecular Hyderpolarizability. |
S. Jayanty and T. P. Radhakrishnan* |
Chem. Eur. J. 2004, 10, 2661. |
Spontaneous Resolution through Helical Assembly of a Conformationally Chiral Molecule with an Unusual Zwitterionic Structure. |
S. Philip Anthony and T. P. Radhakrishnan* |
Chem. Commun. 2004,
1058. |
Helical and Network Coordination Polymers Based on a Novel C2-symmetric Ligand : SHG Enhancement through Specific Metal Coordination. |
S. Jayanty and T. P. Radhakrishnan* |
Chem. Eur. J. 2004, 10, 792. |
Enhanced Fluorescence of Remote Functionalized Diaminodicyanoquino-dimethanes in the |
M. Sharath Chandra and T. P. Radhakrishnan* |
Mol. Cryst. Liq. Cryst. 2003, 403, 77. |
Molecular Aggregation in a Hemicyanine Dye : Modeling by a Combined Crystallographic and Computational Approach. |
M. Sharath Chandra, Y. Ogata, J. Kawamata and T. P. Radhakrishnan* |
Langmuir 2003, 19,
10124. |
Polyelectrolyte Assisted Deaggregation and SHG Enhancement in Hemicyanine Langmuir-Blodgett Film |
S. Jayanty, G. K. Prasad, B. Sreedhar and T. P. Radhakrishnan* |
Polymer 2003, 44, 7265. |
Polyelectrolyte Templated Polyaniline - Film Morphology and Conductivity. |
S. Philip Anthony, P. Raghavaiah and T. P. Radhakrishnan* |
Cryst. Growth &
Design 2003, 3, 631 |
Extreme Molecular Orientations in a Dimorphic System :
Polar/Centric and Polar/Polar Cogrowth |
S. Sharma and T.P.Radhakrishnan* |
J. Phys. Chem. 2003, 107, 147. |
A Unified Crystallographic, Langmuir Layer and Langmuir-Blodgett Film Investigation of Novel Amphiphiles Based on 4-nitroaniline |
S. Sharma and T. P. Radhakrishnan* |
ChemPhysChem 2003,
4, 67 |
Correlation of Molecular Assembly and Interactions in Crystals and Langmuir- Blodgett Films of N-(2,4-dinitrophenyl)-n-octadecylamine |
S. Sharma and T.P.Radhakrishnan* |
J. Phys. Chem. 2003, 107, 147. |
A Unified Crystallographic, Langmuir Layer and Langmuir-Blodgett Film Investigation of Novel Amphiphiles Based on 4-nitroaniline |
T. P. Radhakrishnan |
in Asia Academic Seminar on New Materials, (Eds. P.Rama Rao, M.Doyama, G.Sundararajan and K.Oda) ARCI,
2002, p.41. |
Molecular and Supramolecular Chirality as a Design Element for Quadratic Nonlinear Optical Materials |
T. P.
Radhakrishnan,* |
Chem. Commun. 2002,
2664 |
Two-point Contact Chiral Distinction - A Theoretical Appraisal |
P.Gangopadhyay, N.K.M.Naga Srinivas, D.N.Rao
and T.P.Radhakrishnan* |
Opt. Mater. 2002, 21, 55 |
Control of Supramolecular Organization by Molecular Structure and Symmetry Leading to the Induction and Enhancement of Solid State SHG |
M.Ramakrishnan, R.Kenoth, K.Ravikanth, |
FEBS Lett. 2002, 531, 343 |
N-Myristoylethanolamine - Cholesterol (1:1) Complex : First Evidence from Experiments and Computational Mode |
S. Philip Anthony, L.Srikanth
and |
Mol. Cryst. Liq. Cryst. |
Impact of Molecular Structure Change on the Hierarchy of
Intermolecular Interactions Leading to Polar/Centrosymmetric |
S.Jayanty, P.Gangopadhyay, |
J. Mater. Chem. 2002, 12, 2792 |
Steering Molecular Dipoles from Centrosymmetric to Noncentrosymmetric and SHG Active Assembly Using Remote Functionality and Complexation |
P.Gangopadhyay, D.N.Rao, I.Agranat and T.P.Radhakrishnan* |
Enantiomer 2002, 7, 119 |
Strategic Placement of Stereogenic Centers in Molecular Materials for Second Harmonic Generation |
S.Sharma and T.P.Radhakrishnan* |
Thin Solid Films 2001, 382, 246 |
Phospholipid-Fatty Acid Composite Monolayers : Analysis of the Pressure-Area Isotherms |
T.P.Radhakrishnan |
Resonance 2001, 6(2), 62 |
Renaissance of the Plastic Age : Discoverers of Conducting Polymers Honoured with the Millenium Nobel Prize |
T.P.Radhakrishnan* and I.Agranat* |
J. Org. Chem. 2001, 66, 3215 |
Linear Versus Y-topology in Conjugated Polyene Dications : Questioning Y-aromaticity |
S.Philip Anthony and |
Chem. Commun. 2001,
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