Quertinmont Jean, Beaujean Pierre, Stiennon Julien, Aidibi Youssef, Leriche Philippe, Rodriguez Vincent, Sanguinet Lionel, Champagne Benoît
Theoretical Chemistry Laboratory, Unit of Theoretical and Structural Physical Chemistry, Namur Institute of Structured Matter, University of Namur, B-5000 Namur, Belgium.
Univ Angers, CNRS, MOLTECH-Anjou, F-49000 Angers, France.
J Phys Chem B. 2021 Apr 22;125(15):3918-3931. doi: 10.1021/acs.jpcb.1c01962. Epub 2021 Apr 14.
Molecular switches are chemical compounds exhibiting the possibility of reversible transformations between their different forms accompanied by a modification in their properties. Among these, switching of multi-addressable Benzazolo-OXazolidines (BOXs) from a closed form to an open form results in drastic modifications in their linear and nonlinear optical properties. Here, we target molecules containing two identical BOX units (DiBOX) connected by different π-conjugated linkers, and we combine synthesis, UV/visible absorption, and hyper-Rayleigh scattering (HRS) measurements, together with density functional theory (DFT) calculations. Three derivatives have been considered, which differ by the linker: (i) a bithiophene moiety (Bt), (ii) two 3,4-ethylenedioxythiopene (EDOT) units, and (iii) a triad composed of an EDOT-thiophene-EDOT sequence (TtO). As a matter of fact, these systems can adopt three states (CF-CF, POF-POF, and CF-POF) depending on the closed form (CF) or the protonated open form (POF) of each BOX unit. Despite chemical equivalence, stepwise switching of such systems under the addition of a chemical acid or an oxidant has been experimentally evidenced for two of them (DiBOX-Bt and DiBOX-TtO). Then, DFT calculations show that the first BOX opening leads to the formation of a push-pull π-conjugated segment, exhibiting a huge increase in the first hyperpolarizability (β) and a bathochromic shift with respect to the fully closed form. On the contrary, the second BOX opening induces not only a slight bathochromic shift but also a reduction in their β values conferring the great and uncommon abilities to modulate their linear and nonlinear properties over three discrete levels. Among these results, those on DiBOX-Bt agree with the experimental data obtained by HRS measurements and further shed light on their structure-property relationship.
分子开关是一类化合物,它们能够在不同形式之间进行可逆转变,并伴随着性质的改变。其中,多可寻址苯并唑并恶唑烷(BOXs)从封闭形式转变为开放形式会导致其线性和非线性光学性质发生显著变化。在此,我们以含有两个通过不同π共轭连接基相连的相同BOX单元(DiBOX)的分子为研究对象,并结合了合成、紫外/可见吸收、超瑞利散射(HRS)测量以及密度泛函理论(DFT)计算。我们考虑了三种衍生物,它们的连接基不同:(i)一个联噻吩部分(Bt),(ii)两个3,4-亚乙基二氧噻吩(EDOT)单元,以及(iii)一个由EDOT-噻吩-EDOT序列组成的三联体(TtO)。事实上,这些体系根据每个BOX单元的封闭形式(CF)或质子化开放形式(POF)可以呈现三种状态(CF-CF、POF-POF和CF-POF)。尽管化学性质相同,但实验证明其中两种体系(DiBOX-Bt和DiBOX-TtO)在添加化学酸或氧化剂时会发生逐步开关现象。然后,DFT计算表明,第一个BOX打开会导致形成一个推挽式π共轭片段,相对于完全封闭形式,其第一超极化率(β)大幅增加且出现红移。相反,第二个BOX打开不仅会引起轻微的红移,还会导致其β值降低,赋予了它们在三个离散水平上调节线性和非线性性质的强大且独特的能力。在这些结果中,关于DiBOX-Bt的结果与通过HRS测量获得的实验数据一致,并进一步揭示了它们的结构-性质关系。