TK
Tejwant Singh Kang
Also known as: Tejwant Singh
Guru Nanak Dev University, Kyushu University, Central Salt and Marine Chemicals Research Institute CSIR
About
Aggregation and solvation properties of ILs in aqueous and non-aqueous media. Interaction of ILs with biopolymers, Ionic Liquid-Protein Conjugates, Ion gels, self-assembly in ionic liquids, nanostructured materials using ionic liquids, photocatalysis under sunlight, sustainable development, ionic thermocells, photon upconversion, electrocatalytic water splitting
Employment
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Guru Nanak Dev University Associate Professor2021 - Present
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Guru Nanak Dev University Assistant Professor2012 - 2021
Education
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Kyushu University JSPS Postdoc2011 - 2012
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Central Salt and Marine Chemicals Research Institute CSIR PhD2006 - 2011
Projects & Funding
Projects & funding information is unavailable.
Publications (111)
- Anion-Exchange-Controlled Symmetry-Breaking-Induced Preparation of Highly Efficient Ag@AgClxBr1– x Photocatalysts for Sunlight-Driven Water Remediation Save
- Graphitic Quantum Dots from Wheat Straw as Efficient Adsorbents for Removal of U(VI) from Water Save
- Correction to: Deep Eutectic Solvents as Emerging Media for Surfactant Self-Assembly and Applications of Self-Assembled Systems Save
- Deep Eutectic Solvents as Emerging Media for Surfactant Self-Assembly and Applications of Self-Assembled Systems Save
- Self-Assembly of 2-Hydroxyethyl-1H-imidazolium-Based Surface Active Ionic Liquids and Utilization of Their Aqueous Solution in Superactivity of Cytochrome-c Save
- Ag/AgBr@MoS2 Nanocomposites for Sunlight-Driven Photocatalytic Water Remediation and Electrochemical Water Splitting Save
- Mechanically Robust, Thermally Stable, and Fully Bio-Sourced Eutectogel Electrolytes for MXene-based Flexible Supercapacitor Save
- Electric Field-Driven Long-Range Order and Enhanced Polarization Switching in High-Dipole Ionic Liquids Save
- Ionic liquid-mediated solid–liquid extraction and separation processes for essential oils: modern trends Save
- Mechanically robust, thermally stable, bio-sourced and flexible eutectogel electrolytes for MXene-based symmetric supercapacitors Save