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Maleimide‐controlled formation of Indanonylpyrrolinediones and Spiroindanonylpyrrolinediones via Rh(III)‐Catalyzed C–H activation of Sulfoxonium Ylides.

Muthuraja, P., Akhtar, M. S., Gopinath, P., & Lee, Y. R. (2023). Maleimide‐controlled formation of Indanonylpyrrolinediones and Spiroindanonylpyrrolinediones via Rh(III)‐Catalyzed C–H activation of Sulfoxonium Ylides. Advanced Synthesis & Catalysis, 365(24), 4595-4602. DOI: 10.1002/adsc.202301010

Chemical education at the doctoral level: Strategies to empower Ph.D. students to publish research papers independently.

Ramabhadran, R. O. (2023). Chemical education at the doctoral level: Strategies to empower Ph.D. students to publish research papers independently. In D. J. Nelson (Ed.,). Chemical education research during COVID: Lessons learned during the pandemic (pp. 107-125). ACS Symposium Series, 1448. American Chemical Society. DOI: 10.1021/bk-2023-1448.ch008

Accurate computation of aqueous pKas of biologically relevant organic acids: Overcoming the challenges posed by multiple conformers, tautomeric equilibria, and disparate functional groups with the fully black-box pK‑Yay method.

Pereira, R. W., & Ramabhadran, R. O. (2023). Accurate computation of aqueous pKas of biologically relevant organic acids: Overcoming the challenges posed by multiple conformers, tautomeric equilibria, and disparate functional groups with the fully black-box pK‑Yay method. Journal of Physical Chemistry A, 127(43), 9121-9138. DOI: 10.1021/acs.jpca.3c02977

Panicle transcriptome of high-yield mutant indica rice reveals physiological mechanisms and novel candidate regulatory genes for yield under reproductive stage drought stress.

Eragam, A., Mohapatra, A., Shukla, V., Kadumuri, R. V., George, A. P., Putta, L., Akkareddy, S., Chavali, S., Vemireddy, L. R., & Ramireddy, E. (2023). Panicle transcriptome of high-yield mutant indica rice reveals physiological mechanisms and novel candidate regulatory genes for yield under reproductive stage drought stress. BMC Plant Biology, 23. DOI: 10.1186/s12870-023-04507-1