Boidachenko Kseniia, Liberka Michal, Wang Junhao, Tokoro Hiroko, Ohkoshi Shin-Ichi, Chorazy Szymon
Faculty of Chemistry, Jagiellonian University, Gronostajowa 2 30-387 Krakow Poland
Doctoral School of Exact and Natural Sciences, Jagiellonian University, Łojasiewicza 11 30-348 Kraków Poland.
J Mater Chem C Mater. 2024 Aug 23;12(37):14964-14977. doi: 10.1039/d4tc01042f. eCollection 2024 Sep 26.
The design of high-performance optical materials can be realized using coordination polymers (CPs) often supported by non-covalent interactions, such as metallophilicity. The challenge is to control two or more optical effects, , non-linear optics (NLO) and photoluminescence (PL). We present a new strategy for the combination of the NLO effect of second-harmonic generation (SHG) and the visible PL achieved by linking dicyanidoaurate(i) ions, which form luminescent metallophilic stacks, with cadmium(ii) complexes bearing chiral amine ligands, used to break the crystal's symmetry. We report a family of NLO- and PL-active materials based on heterometallic Cd(ii)-Au(i) coordination systems incorporating enantiopure propane-1,2-diamine (pda) ligands (1-, 1-), their racemate (2), and enantiopure -cyclopentane-1,2-diamine (cpda) ligands (3-, 3-). Due to acentric space groups, they exhibit the SHG signal, tunable within the range of 11-24% of the KDP reference, which was correlated with the dipole moments of Cd(ii) units. They show efficient blue PL whose energy and quantum yield, the latter ranging from 0.40 to 0.83, are controlled by Cd(ii) complexes affecting the Au-Au distances and vibrational modes. We prove that chiral Cd(ii)-amine complexes play the role of molecular agents for the stimulation of both the NLO and PL of the materials based on aurophilic stacks.
高性能光学材料的设计可通过通常由非共价相互作用(如亲金性)支持的配位聚合物(CPs)来实现。挑战在于控制两种或更多种光学效应,即非线性光学(NLO)和光致发光(PL)。我们提出了一种新策略,通过连接二氰基金(I)离子(形成发光的亲金堆叠)与带有手性胺配体的镉(II)配合物(用于打破晶体对称性)来实现二次谐波产生(SHG)的NLO效应与可见光PL的结合。我们报道了一系列基于异金属Cd(II)-Au(I)配位体系的NLO和PL活性材料,该体系包含对映纯的丙烷-1,2-二胺(pda)配体(1-,1-)、它们的外消旋体(2)以及对映纯的环戊烷-1,2-二胺(cpda)配体(3-,3-)。由于非中心空间群,它们表现出SHG信号,在KDP参比的11 - 24%范围内可调,这与Cd(II)单元的偶极矩相关。它们表现出高效的蓝色PL,其能量和量子产率(后者范围为0.40至0.83)由影响Au - Au距离和振动模式的Cd(II)配合物控制。我们证明,手性Cd(II)-胺配合物在基于亲金堆叠的材料中起到刺激NLO和PL的分子媒介作用。