J Am Chem Soc. 2015 Aug 12;137(31):10000-8. doi: 10.1021/jacs.5b06145. Epub 2015 Aug 3.
We report the substitutional doping of solid-state spiro-bis(5-methyl-1,9-oxido-phenalenyl)boron radical ([2]2B) by co-crystallization of this radical with the corresponding spiro-bis(5-methyl-1,9-oxido-phenalenyl)beryllium compound ([2]2Be). The pure compounds crystallize in different space groups ([2]2B, P1̅, Z = 2; [2]2Be, P2₁/c, Z = 4) with distinct packing arrangements, yet we are able to isolate crystals of composition [2]2B(1-x)Be(x), where x = 0-0.59. The phase transition from the P1̅ to the P2₁/c space group occurs at x = 0.1, but the conductivities of the solid solutions are enhanced and the activation energies reduced for values of x = 0-0.25. The molecular packing is driven by the relative concentration of the spin-bearing ([2]2B) and spin-free ([2]2Be) molecules in the crystals, and the extended Hückel theory band structures show that the progressive incorporation of spin-free [2]2Be in the lattice of the [2]2B radical (overall bandwidth, W = 1.4 eV, in the pure compound) leads to very strong narrowing of the bandwidth, which reaches a minimum at [2]2Be (W = 0.3 eV). The results provide a graphic picture of the structural transformations undergone by the lattice, and at certain compositions we are able to identify distinct structures for the [2]2B and [2]2Be molecules in a single crystalline phase.
我们报告了通过将这个自由基与相应的螺环双(5-甲基-1,9-氧代菲咯啉基)铍化合物[2]2Be 共结晶来实现固态螺环双(5-甲基-1,9-氧代菲咯啉基)硼自由基[2]2B 的取代掺杂。纯化合物在不同的空间群([2]2B,P1̅,Z = 2;[2]2Be,P2₁/c,Z = 4)中结晶,具有不同的堆积排列,但我们能够分离出组成[2]2B(1-x)Be(x)的晶体,其中 x = 0-0.59。从 P1̅到 P2₁/c 空间群的相变发生在 x = 0.1 时,但对于 x = 0-0.25 的值,固溶体的电导率增强且激活能降低。分子堆积由晶体中带磁([2]2B)和不带磁([2]2Be)分子的相对浓度驱动,扩展 Hückel 理论能带结构表明,带磁的[2]2B 自由基晶格中逐渐掺入不带磁的[2]2Be(整体带宽,W = 1.4 eV,在纯化合物中)会导致带宽非常强烈的变窄,在[2]2Be 时达到最小值(W = 0.3 eV)。结果提供了晶格经历的结构转变的直观描述,并且在某些组成下,我们能够在单个晶相中识别出[2]2B 和[2]2Be 分子的不同结构。