Alagappa Government Arts College, is a co-educational arts and science college located in Karaikudi of Sivaganga District in Tamil Nadu, India.
Cerium oxide (CeO2) and Nickel oxide (NiO) nanoparticles were synthesized via chemical precipitation route and characterized using different techniques such as XRD, TEM, FTIR, and UV–Vis spectroscopy. XRD confirmed single-phase, face-centered cubic (fcc) structure with average crystallite sizes as in the range around 65 and 70 nm for CeO2 and NiO, respectively. FTIR spectra displayed characteristic metal oxide vibrations at 837 and 815 cm−1, although Tauc plot analysis revealed the band gaps approximately at 2.2 and 2.3 eV for CeO2 and NiO, respectively. Electrochemical studies were demonstrated in 2 M KOH electrolyte which offered specific capacitances values 75.64 and 174.32 F/g for CeO2 and NiO at 1 A/g, with coulombic efficiencies value of 97
Un-doped NiCr2O4 and Sn-V co-doped NiCr2O4 nanoparticles with varying doping concentrations (2
AI adoption in banking compliance is exposing new liability gaps where traditional accountability doctrines prove inadequate for algorithmic decision-making. This study reveals how liability frameworks must evolve to address these challenges, adopting a qualitative multiple-case design of HSBC's AML failures, JPMorgan's AI-driven platforms, and RBI regulated banks. The findings revealed three critical dimensions of liability such as foreseeability, control, and intent. The research introduces an AI-adaptive corporate liability framework grounded in four principles: presumptive corporate responsibility to prevent blame-shifting, duty of algorithmic foresight to anticipate foreseeable risks, a shared accountability matrix clarifying roles across organizational actors, and ethical intent embedding to institutionalize responsible AI governance. By extending liability theory into empirical banking practice, the study contributes doctrinal innovation, practical governance tools, and policy insights to ensure that AI adoption enhances resilience, accountability, and public trust.
The two molecules in the asymmetric unit of the title compound, C17H16N2O, have a structural overlap with a root-mean-square deviation of 1.11 Å.
The Co-doped ZnO and Co-doped ZnO/CQDs nanoparticles are prepared by the chemical method. The incorporation of CQDs reduces the crystallite size, whereas the bond length remains the same. The chemical composition and elemental mapping are reported. The bandgap of Co-doped ZnO is reduced by the addition of CQDs. The Carbon quantum dots-supported Co-doped ZnO nanoparticles exhibited antibacterial activity against B. subtilis, E. coli, and K. pneumoniae. Both samples exhibited an increase in antioxidant activity with the increase in concentration and the IC50 value was found to be 56.57 and 67.3 μg/mL for Co-doped ZnO/CQDs and Co-doped ZnO nanoparticles, respectively. The concentration-dependent decrease in cell viability with the visible morphological deterioration indicating cell death was observed in lung adenocarcinoma cells when treated with Co-doped and Co-doped ZnO/CQD with the IC50 value of 58.833 and 55.046 µg/mL, respectively.