Chen X Y, Jensen M P, Liu G K
Chemistry Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.
J Phys Chem B. 2005 Jul 28;109(29):13991-9. doi: 10.1021/jp0516700.
Using both laser-excited fluorescence and optical absorption methods, we have determined 57 crystal-field (CF) energy levels of Sm 3+ in crystals of Sm(Et2Dtc)3(bipy). The analysis of the energy levels is based on a model Hamiltonian consisting of both free-ion and CF terms. The CF modeling of the experimental energy levels yielded physically reasonable Hamiltonian parameters with a final rms deviation of 17.3 cm(-1). In comparison with Sm 3+ in other hosts, the CF splitting of Sm 3+ in the lattice of Sm(Et2Dtc)3(bipy) is rather weak. The observed fluorescence decay of the 4G(5/2) manifold is single-exponential, with a lifetime of 24.5 mus, indicating only one site of Sm3+ in the lattice. According to the Judd-Ofelt theory, values of three intensity parameters were obtained (Omega(2,4,6) = 1.57, 2.65, and 3.65, in units of 10(-20) cm(-1)). The calculated branching ratios for transitions from the 4G(5/2) manifold are in agreement with experimental values. The calculated radiative lifetime of the 4G(5/2) manifold is 3.24 ms, and the corresponding fluorescence quantum efficiency is only 0.75%. Efficient multiphonon relaxation processes induced by the localized high-frequency vibrational modes in the bipyridyl group may lead to the extremely low quantum efficiency observed. The thermal line broadening and shifts of the 4G(5/2)(1) --> 6F(1/2) transition were observed and fitted very well by the McCumber-Sturge equations with an assumption of Raman phonon scattering processes as the leading relaxation mechanism. The Debye temperature for this crystal is predicted to be 350 K.
我们使用激光激发荧光和光吸收方法,确定了Sm(Et2Dtc)3(bipy)晶体中Sm3+的57个晶体场(CF)能级。能级分析基于一个由自由离子项和CF项组成的模型哈密顿量。对实验能级进行CF建模得到了物理上合理的哈密顿量参数,最终均方根偏差为17.3 cm(-1)。与其他基质中的Sm3+相比,Sm(Et2Dtc)3(bipy)晶格中Sm3+的CF分裂相当弱。观察到的4G(5/2)多重态的荧光衰减是单指数的,寿命为24.5 μs,表明晶格中只有一个Sm3+位点。根据Judd-Ofelt理论,得到了三个强度参数的值(Ω(2,4,6) = 1.57、2.65和3.65,单位为10(-20) cm(-1))。从4G(5/2)多重态跃迁的计算分支比与实验值一致。计算得到的4G(5/2)多重态的辐射寿命为3.24 ms,相应的荧光量子效率仅为0.75%。联吡啶基团中局域高频振动模式引起的高效多声子弛豫过程可能导致观察到的极低量子效率。观察到了4G(5/2)(1) --> 6F(1/2)跃迁的热线宽和位移,并通过McCumber-Sturge方程很好地拟合,假设拉曼声子散射过程是主要的弛豫机制。预测该晶体的德拜温度为350 K。