Search Results - "Umadevi, Deivasigamani"

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  1. 1

    Quantum Mechanical Study of Physisorption of Nucleobases on Carbon Materials: Graphene versus Carbon Nanotubes by Umadevi, Deivasigamani, Sastry, G. Narahari

    Published in The journal of physical chemistry letters (07-07-2011)
    “…Quantum chemical calculations reveal that the binding energy of the carbon nanotube (CNT) and DNA/RNA nucleobase complexes is controlled by the curvature of…”
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    Hierarchical supramolecular co-assembly formation employing multi-component light-harvesting charge transfer interactions giving rise to long-wavelength emitting luminescent microspheres by Gorai, Tumpa, Lovitt, June I, Umadevi, Deivasigamani, McManus, Gavin, Gunnlaugsson, Thorfinnur

    Published in Chemical science (Cambridge) (06-07-2022)
    “…Charge transfer (CT) interaction induced formation of a hierarchical supramolecular assembly has attracted attention due to its wide diversity of structural…”
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    Quasiparticle GW Calculations on Lead-Free Hybrid Germanium Iodide Perovskite CH3NH3GeI3 for Photovoltaic Applications by Umadevi, Deivasigamani, Watson, Graeme W

    Published in ACS omega (31-03-2019)
    “…Lead-free organic–inorganic halide perovskites have gained much attention as nontoxic alternatives to CH3NH3PbI3 in next-generation solar cells. In this study,…”
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    Porous organic polymers-based fluorescent chemosensors for Fe(III) ions-a functional mimic of siderophores by Mohan, Binduja, Shanmughan, Ananthu, Krishna, Alenthwar Vamshi, Noushija, Mannanthara Kunhumon, Umadevi, Deivasigamani, Shanmugaraju, Sankarasekaran

    Published in Frontiers in chemistry (15-02-2024)
    “…Extended organic polymers such as amorphous Covalent Organic Polymers (COPs) and crystalline Covalent Organic Frameworks (COFs) are emerging functional…”
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    Discriminative fluorescent sensing of nitro-antibiotics at ppb level using N-phenyl-amino-1,8-naphthalimides chemosensors by Shanmughan, Ananthu, Raja Lakshmi, Pandi, Umadevi, Deivasigamani, Shanmugaraju, Sankarasekaran

    Published in Results in Chemistry (01-01-2022)
    “…[Display omitted] •Report amino-1,8-naphthalimide fluorescence sensors Nap-1 and Nap for antibiotics.•Nap-1 and Nap-2 displayed a positive solvatochromism in…”
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    Anomalous Lithium Adsorption Propensity of Monolayer Carbonaceous Materials: A Density Functional Study by PANIGRAHI, SWATI, UMADEVI, DEIVASIGAMANI, SASTRY, G NARAHARI

    “…Interaction between lithium and carbonaceous materials has gained a lot of importance in lithium battery industry as an important source of energy and storage…”
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    Noncovalent Interaction of Carbon Nanostructures by Umadevi, Deivasigamani, Panigrahi, Swati, Sastry, Garikapati Narahari

    Published in Accounts of chemical research (19-08-2014)
    “…Conspectus The potential application of carbon nanomaterials in biology and medicine increases the necessity to understand the nature of their interactions…”
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    Molecular and Ionic Interaction with Graphene Nanoflakes: A Computational Investigation of CO2, H2O, Li, Mg, Li+, and Mg2+ Interaction with Polycyclic Aromatic Hydrocarbons by Umadevi, Deivasigamani, Sastry, G. Narahari

    Published in Journal of physical chemistry. C (19-05-2011)
    “…Understanding the nature of nonbonded interactions on the graphene surface is a problem of outstanding interest. Highly reliable…”
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    Metal ion binding with carbon nanotubes and graphene: Effect of chirality and curvature by Umadevi, Deivasigamani, Sastry, G. Narahari

    Published in Chemical physics letters (11-10-2012)
    “…[Display omitted] ► Contrasting binding preferences observed for alkali and alkaline earth metal ions. ► Alkali metal ions prefer armchair and alkaline earth…”
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    Feasibility of carbon nanomaterials as gas sensors: a computational study by Umadevi, Deivasigamani, Sastry, G. Narahari

    Published in Current science (Bangalore) (10-05-2014)
    “…Carbonaceous materials are a promising class of materials for potential application as chemical and biomolecule sensors. In this work we have done first…”
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    A simple 4-amino-1,8-naphthalimide hydrazine based “turn-on” fluorescent chemosensor for selective and reversible detection of Zn(II) ion by Mohan, Binduja, Balakrishnan, Prabukumar, Umadevi, Deivasigamani, Shanmugaraju, Sankarasekaran

    Published in Inorganica Chimica Acta (01-04-2022)
    “…The 4-amino-1,8-naphthalimide-hydrazine based fluorescence sensor (Nap-NH2) was designed, synthesized, and used as a “turn-on” fluorescent sensor for selective…”
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    Discriminative 'turn-on' fluorescence sensing of volatile halogenated solvents using a cleft-shaped 4-amino-1,8-naphthalimide Tröger's base fluorophore by Mohan, Binduja, Umadevi, Deivasigamani, Shanmugaraju, Sankarasekaran

    Published in Sensors & diagnostics (17-03-2023)
    “…A cleft-shaped 2-picolyl-4-amino-1,8-naphthalimide Tröger's base ( TBNap ) was synthesized and employed as a fluorescent 'turn-on' chemosensor for the…”
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    N-aryl-4-amino-1,8-naphthalimide Tröger's bases-based internal charge transfer (ICT) fluorescence ‘turn-on’ chemosensors for volatile organic amines by Mohan, Binduja, Sarkar, Dipanjana, Raja Lakshmi, Pandi, Umadevi, Deivasigamani, Shanmugaraju, Sankarasekaran

    “…Two cleft-shaped N-aryl-4-amino-1,8-naphthalimide Tröger’s bases have been designed and employed as fluorescent ‘turn-on’ and colorimetric chemosensors for the…”
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    Quasiparticle GW Calculations on Lead-Free Hybrid Germanium Iodide Perovskite CH 3 NH 3 GeI 3 for Photovoltaic Applications by Umadevi, Deivasigamani, Watson, Graeme W

    Published in ACS omega (31-03-2019)
    “…Lead-free organic-inorganic halide perovskites have gained much attention as nontoxic alternatives to CH NH PbI in next-generation solar cells. In this study,…”
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    Journal Article
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    Impact of the Chirality and Curvature of Carbon Nanostructures on Their Interaction with Aromatics and Amino Acids by Umadevi, Deivasigamani, Sastry, G. Narahari

    Published in Chemphyschem (05-08-2013)
    “…Understanding noncovalent interactions on the surfaces of carbon nanostructures (CNSs) is of fundamental importance and also has implications in nano‐ and…”
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