Nariyangadu Sesha Bamini, Choedak Tenzin, Malar Ezekiel Joy Padma, Chen Junsheng, Thyrhaug Erling, Kumar Pushpendra, Zhou Jinming, Yechuri Vidyalakshmi, Pal Suman Kalyan, Lidin Sven, Thangadhorai Kejalakshmy Namassivayane, Karki Khadga J, Pullerits Tönu
Chemical Physics and NanoLund, Lund University, P.O. Box 124, 22100 Lund, Sweden.
National Centre for Ultrafast Processes, University of Madras, Chennai 600113, India.
ACS Omega. 2020 Aug 10;5(33):20863-20873. doi: 10.1021/acsomega.0c02303. eCollection 2020 Aug 25.
The synthesis and crystal structure of rhodamine 590 acid phthalate (RhAP) have been reported. This novel solid-state rhodamine derivative not only has a longer fluorescence lifetime compared to rhodamine solid-state matrixes where emission is quenched but also possesses strong nonlinear optical characteristics. The static and dynamic first- and second-order hyperpolarizabilities were calculated using the time-dependent density functional theory at the B3LYP/6-31+G* level. The computed static values of β and γ of RhAP by the X-ray diffraction (XRD) structure were 31.9 × 10 and 199.0 × 10 esu, respectively. These values were about 62 times larger than the corresponding values in urea, an already well-known nonlinear optical material. The second-order hyperpolarizability of the compound was determined experimentally by measuring the two-photon absorption cross section using intensity-modulated light fields. The reported compound, excitable at near-infrared, exhibited frequency upconversion with the two-photon absorption coefficient enhanced by two orders of magnitude compared to that of the dye solution. Hosting the dye in the solid, at high concentrations, exploits the nonlinearity of the dye itself as well as results in significant excitonic effects including formation of broad exciton band and superradiance.
已报道了若丹明590邻苯二甲酸(RhAP)的合成及晶体结构。这种新型固态若丹明衍生物不仅与发射被猝灭的若丹明固态基质相比具有更长的荧光寿命,而且还具有很强的非线性光学特性。使用含时密度泛函理论在B3LYP/6 - 31 + G*水平计算了静态和动态的一阶及二阶超极化率。通过X射线衍射(XRD)结构计算得到的RhAP的β和γ的静态值分别为31.9×10和199.0×10 esu。这些值比已经是著名非线性光学材料的尿素中的相应值大约大62倍。通过使用强度调制光场测量双光子吸收截面,实验测定了该化合物的二阶超极化率。所报道的化合物在近红外激发,表现出频率上转换,其双光子吸收系数比染料溶液增强了两个数量级。将该染料高浓度地置于固体中,利用了染料本身的非线性以及导致了包括形成宽激子带和超辐射在内的显著激子效应。