首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >THEORETICAL STUDY AND LUMINESCENCE PROPERTIES OF THE CYCLIC CU-3(DPPM)(3)OH2+ CLUSTER - THE FIRST LUMINESCENT CLUSTER HOST AT ROOM TEMPERATURE
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THEORETICAL STUDY AND LUMINESCENCE PROPERTIES OF THE CYCLIC CU-3(DPPM)(3)OH2+ CLUSTER - THE FIRST LUMINESCENT CLUSTER HOST AT ROOM TEMPERATURE

机译:循环CU-3(DPPM)(3)OH2 +团簇的理论研究和发光特性-室温下的第一个发光团簇

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The [Cu-3(dppm)(3)OH](BF4)(2) cyclic cluster host is found to be luminescent at 298 K (lambda(max) = 540 nm; tau(e) = 89 +/- 9 mu s; Phi(e) = 0.14 +/- 0.01) in degassed ethanol solutions and at 77 K (lambda(max) = 480 nm; tau(e) = 170 +/- 40 mu s; Phi = 0.73 +/- 0.07) also in ethanol. The nature of the lowest energy excited states has been addressed theoretically using density functional theory and experimentally using UV-visible, luminescence, and polarized luminescence spectroscopy and is found to be (1,3)A(2) arising from the ...(18e)(4)(7a(2))(1)(13a(1))(1) electronic configuration. The excited state geometry optimization for the model Cu-3(PH3)(6)OH2+ compound in its T-1 state ((3)A(2)) has been performed using density functional theory and compared to its ground state structure. The Cu ... Cu bond length is expected to decrease greatly in the excited state (calculated Delta Q similar to 0.47 Angstrom), in agreement with the d(10) electronic configuration. The perturbation of the photophysical properties by the addition of two guest carboxylate anions has been investigated. From the Stern-Volmer plots, the quenching constants, k(q), are 1.65 x 10(8) and 5.10 x 10(8) M(-1) s(-1) for acetate and 4-aminobenzoate, respectively, which are also proportional to the relative binding strengths of the substrates with Cu-3(dppm)(3)OH2+ (i.e., acetate < 4-aminobenzoate). [References: 90]
机译:发现[Cu-3(dppm)(3)OH](BF4)(2)环状簇主体在298 K时发光(λ(max)= 540 nm; tau(e)= 89 +/- 9 mu s;在脱气的乙醇溶液中和在77 K(lambda(max)= 480 nm; tau(e)= 170 +/- 40μss; Phi = 0.73 +/- 0.07)下在脱气乙醇溶液中的Phi(e)= 0.14 +/- 0.01) )也放在乙醇中。最低能量激发态的性质已在理论上使用密度泛函理论进行了讨论,并在实验中使用了UV可见光谱,发光光谱和偏振发光光谱进行了研究,结果发现是(1,3)A(2)由...( 18e)(4)(7a(2))(1)(13a(1))(1)电子配置。已经使用密度泛函理论对处于T-1态((3)A(2))的Cu-3(PH3)(6)OH2 +模型化合物的激发态几何优化进行了比较,并将其与基态结构进行了比较。与d(10)电子结构一致,预计在激发态下Cu ... Cu键的长度将大大减少(计算的Delta Q与0.47埃相似)。已经研究了通过添加两种客体羧酸根阴离子对光物理性质的扰动。从Stern-Volmer曲线图中,对于乙酸盐和4-氨基苯甲酸酯,淬灭常数k(q)分别为1.65 x 10(8)和5.10 x 10(8)M(-1)s(-1),其中它们与底物与Cu-3(dppm)(3)OH2 +的相对结合强度也成正比(即,乙酸盐<4-氨基苯甲酸酯)。 [参考:90]

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