We study the thermo-physical and photoluminescence (PL) properties of cadmium-(bis)dodecylthiolate (Cd(C12H25S)2). Significant attention is drawn to characterization of Cd(C12H25S)2 by different methods. The laser-induced PLs of Cd(C12H25S)2 and Cd(C12H25S)2/(polymethyl methacrylate) (PMMA) composites are studied. Samples of Cd(C12H25S)2/PMMA are synthesized by the polymerization method. Ultraviolet (UV)-pulsed laser irradiation of the samples under relatively small fluences leads to the formation of induced PL with the maximum near the wavelength of 600 nm. This process can be attributed to the transformation of Cd(C12H25S)2 within the precursor grains. Another PL peak at 450–500 nm, which appears under the higher fluences, relies on the formation of CdS complexes with a significant impact of the polymer matrix.
The
heat capacities of tripeptides N-formyl-l-methionyl-l-leucyl-l-phenylalaninol (N-f-MLF-OH) and N-formyl-l-methionyl-l-leucyl-l-phenylalanine methyl ester (N-f-MLF-OMe) were measured by precision adiabatic vacuum calorimetry
over the temperature range from T = (6 to 350) K.
The tripeptides were stable over this temperature range, and no phase
change, transformation, association, or thermal decomposition was
observed. The standard thermodynamic functions: molar heat capacity Cp,m, enthalpy H(T) – H(0), entropy S(T), and Gibbs energy G(T) – H(0) of peptides were
calculated over the range from T = (0 to 350) K.
The low-temperature (T ≤ 50 K) heat capacities
dependencies were analyzed using the Debye’s and the multifractal
theories. The standard entropies of formation of peptides at T = 298.15 K were calculated.
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