Undergraduate co-authors are underlined
28. A novel merocyanine photoacid for visible light-controlled pH modulation, Choudhury, R. Martin, T.; Buie, N.; Walker, B.; Dong, J. Journal of Photochemistry and Photobiology –A-Chemistry, 2024, 459, 116081, 1-7.
27. In Situ Generation of a Zwitterionic Fluorescent Probe for Detection of Human Serum Albumin Protein, Choudhury, R.; Sharma, A. K.; Paudel, P.; Wilson, P.; Pereira, A. Analytical Biochemistry, 2022, 646, 114630, pp 1-10.
26. Evaluating the Merit of a Syringol Derived Fluorophore as a Charge Transfer Probe for Detection of Serum Albumins, Choudhury, R.; Paudel, P.; Sharma, A. K.; Webb, S.; Ware, M. Journal of Photochemistry and Photobiology -A-Chemistry, 2021, 422, pp 1-8.
25. Disentangling of Photooxidative and Downstream Dark Effects in Bacterial Inactivation: A Singlet Oxygen Priming Mechanism, Jabeen, S.; Farag, M.; Malek, M.; Choudhury, R.; Greer, A. Journal of Organic Chemistry, 2020, 85 (19), pp 12505–12513.
24. Dual Luminescent Charge Transfer Probe for Quantitative Determination of Serum Albumin in Aqueous Samples, Choudhury, R.; Quattlebaum, B.; Conkin C, Patel, S. R.; Mendenhall, K. Spectrochimica Acta A: Molecular and Biomolecular Spectroscopy, 2020, 235, pp 1-7.
23. A boronic acid based intramolecular charge transfer probe for colorimetric detection of hydrogen peroxide, Choudhury, R.; Ricketts A. T.; Molina, D. G.; Paudel, P. Tetrahedron Letter, 2019, 60 (46), pp 1-5.
22. Selective detection of Human Serum Albumin by near infrared emissive fluorophores: Insights into structure-property relationship, Choudhury, R.; Patel, S. R.; Ghosh, A. Journal of Photochemistry and Photobiology –A-Chemistry, 2019, 376, pp 100-107.
21. Microenvironment-sensitive fluorophore for recognition of human serum albumin in aqueous solution, Choudhury, R.; Patel, S. R.; Lykins, H. R. The Chemist, 2018, 91(2), pp 27-32.
20. A red emissive donor-acceptor fluorophore as protein sensor: Synthesis, characterization and binding study, Choudhury, R.; Parker, H. E.; Cendejas, K. M.; Mendenhall, K. L. Tetrahedron Letter, 2018, 59, pp 3020-3025.
19. Ultrafast electron transfer across a nano-capsular wall: Coumarins as donors, viologen as acceptor, and octa acid capsule as the mediator, Chuang, C. –H.; Porel, M.; Choudhury, R.; Burda, C.; Ramamurthy, V. Journal of Physical Chemistry- B, 2018, 122 (1), pp 328–337.
18. A computational examination of the stability of β-Amyloid and HCC interactions, Sharma, A. K.; Choudhury, R.; Perischetti, J.; Tale, E.; Prelvukaj, G.; Cropley, T. Journal of Theoretical and Computational Chemistry, 2018, 17 (1), pp 1850001-1850015.
17. Understanding the complexation of aliphatic and aromatic acids guests with octa acid, Choudhury, R.; Ramamurthy, V. Journal of Physical Organic Chemistry, 2018, 31 (5), pp 1-9.
16. Supramolecular self-assembly of water-soluble cavitands: Investigated by molecular dynamics simulation, Choudhury, R.; Cendejas, K.; Parker, H. E.; Molina, D. Journal of Inclusion Phenomenon & Macrocyclic Chemistry, 2017, 89 (1-2), pp 199-205.
15. Ultrafast electron transfer from upper excited state of encapsulated azulenes to acceptor across an organic molecular wall, Mohan Raj, A.; Porel, M.; Mukherjee, P.; Ma, X.; Choudhury, R.; Galoppini, E.; Sen, P.; Ramamurthy, V. Journal of Physical Chemistry- C, 2017, 121(37), pp 20205-20216.
14. Container Chemistry: Manipulating excited state behavior of organic guests within cavitands that form capsules in water, Jagadesan, P.; Samanta, R. S.; Choudhury, R.; Ramamurthy, V. Journal of Physical Organic Chemistry, 2017, 30(9), pp 1-12.
13. Predicting conformations and orientations of guests within a water soluble host: A molecular docking approach, Choudhury, R.; Cendejas, K. Journal of Inclusion Phenomenon & Macrocyclic Chemistry, 2017, 87 (3), pp 349-356.
12. Air-water interface effects on the regioselectivity of singlet oxygenations of a trisubstituted alkene, Malek, B; Ghogare, A. A.; Choudhury, R.; Greer, A. Tetrahedron Letter, 2015, 56 (30), pp 4505-4508.
11. Photoisomerization and photooxygenation of 1, 4-diaryldienes in a confined space, Samanta, S.; Choudhury, R.; Ramamurthy, V. Journal of Physical Chemistry- A. 2014, 118 (45), pp 10554-10562.
10. Synthesis versus natural receptors: Supramolecular control of chemical sensing in fish, Silva, J. P. D.; Choudhury, R.; Porel, M.; Pischel, U.; Jockusch, S.; Hubbard, P. C.; Ramamurthy, V.; Canario, A. V. M. ACS Chemical Biology, 2014, 9 (7), pp 1432-1436.
9. Synergism between airborne singlet oxygen and a trisubstituted olefin sulfonate for the inactivation of bacteria, Choudhury, R.; Greer, A. Langmuir, 2014, 30 (12), pp 3599-3605.
8. Hydrocarbons depending on the chain length and head group adopt different conformations within a water-soluble nano-capsule: 1H NMR and molecular dynamics studies, Choudhury, R.; Barman, A.; Prabhakar, R.; Ramamurthy, V. Journal of Physical Chemistry- B. 2013, 117 (1), pp 398-407.
7. Deep-cavity cavitand octa acid as a hydrogen donor: Photofunctionalization with nitrenes generated from azidoadamantanes, Choudhury, R.; Gupta, S.; Silva, J. P. D.; Ramamurthy, V. Journal of Organic Chemistry, 2013, 78 (5), pp 1824-1832.
6. Cucurbituril adamantanediazirine complexes and consequential carbene chemistry, Gupta, S.; Choudhury, R.; Krois, D.; Brinker, U. H.; Ramamurthy, V. Journal of Organic Chemistry, 2012, 77 (11), pp 5155-5160.
5. Gold nanoparticles functionalized with deep-cavity cavitands: Synthesis, characterization, and photophysical studies, Samanta, S.; Kulasekharan, R.; Choudhury, R.; Jagadesan, P.; Jayaraj, N.; Ramamurthy, V. Langmuir, 2012, 28 (32), pp 11920-11928.
4. Photochemical generation and reactivity of carbenes within an organic cavitand and capsule: Photochemistry of adamantanediazirines, Gupta, S.; Choudhury, R.; Krois, D.; Wagner, G.; Brinker, U. H.; Ramamurthy, V. Organic Letter, 2011, 13 (22), pp 6074-6077.
3. Restricted rotation due to the lack of free space within a capsule translates into product selectivity: Photochemistry of cyclohexyl phenyl ketones within a water soluble organic capsule, Kulasekharan, R.; Choudhury, R.; Prabhakar, R.; Ramamurthy, V. Chemical Communication, 2011, 47, pp 2841-2843.
2. Guest rotation within a capsuleplex probed by NMR and EPR techniques, Kulasekharan, R.; Jayaraj, N.; Porel, M.; Choudhury, R.; Sundaresan, A. K.; Parthasarathy, A.; Ottaviani, M. F.; Jockush, S.; Turro, N. J.; Ramamurthy, V. Langmuir, 2010, 26 (10), pp 6943-6953.
1. Tripodal naphthalene ether ligand: Solid-state anion recognition and fluorescence studies, Pramanik, A.; Bhuyan, M.; Choudhury, R.; Das, G. Journal of Molecular Structure, 2008, 879, pp 88-95.
Contact Information
Rajib Choudhury
Arkansas Tech University
Russellville, AR, 72801
Email: rchoudhury@atu.edu (Phone) 479-356-2028