A Gálico Diogo, Kitos Alexandros A, Ramdani Rayan, Ovens Jeffrey S, Murugesu Muralee
Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.
X-Ray Core Facility, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.
J Am Chem Soc. 2024 Oct 2;146(39):26819-26829. doi: 10.1021/jacs.4c07418. Epub 2024 Sep 20.
The rational engineering of molecules is a powerful chemistry tool of pivotal importance in the fields of molecular magnetism and luminescence. Hence, systems that can be modulated via molecular engineering and composition control are expected to present extra versatility regarding the tunability of their properties. This is the case with molecular cluster aggregates (MCAs), high nuclearity molecular compounds. Herein, we demonstrate how the union of both strategies, namely, composition control and molecular engineering, can be employed to enhance molecular upconversion in MCAs. This was achieved by doping a MCA with Ce ions. By replacement of the optically silent Gd ions with Ce, the upconversion mechanism is modified due to Ce-mediated cross-relaxation. In addition to this effect, we could also engineer the degree of metal site distortion due to the larger size of Ce ions, relaxing the selection rules and impacting the upconversion quantum yield and luminescent thermometry. Opto-structural correlations demonstrate that the presented molecular engineering strategy can be used to enhance the performance of molecular upconverters.
分子的合理设计是分子磁学和发光领域中极为重要的强大化学工具。因此,可通过分子工程和组成控制进行调节的体系,有望在其性质的可调性方面展现出额外的多功能性。分子簇聚集体(MCA),即多核分子化合物,就是这样的情况。在此,我们展示了如何将组成控制和分子工程这两种策略结合起来,用于增强MCA中的分子上转换。这是通过用Ce离子掺杂MCA实现的。用Ce取代光学惰性的Gd离子后,由于Ce介导的交叉弛豫,上转换机制发生了改变。除了这种效应外,由于Ce离子尺寸较大,我们还能够设计金属位点的畸变程度,放宽选择规则并影响上转换量子产率和发光测温。光结构相关性表明,所提出的分子工程策略可用于提高分子上转换器件的性能。