Department of Chemistry, University of North Carolina, Chapel Hill, NC 27599, USA.
Proc Natl Acad Sci U S A. 2013 Jan 15;110(3):876-80. doi: 10.1073/pnas.1220742110. Epub 2012 Dec 31.
Visible light excitation of the ligand-bridged assembly [(bpy)(2)Ru(a)(II)(L)Ru(b)(II)(bpy)(OH(2))(4+)] (bpy is 2,2'-bipyridine; L is the bridging ligand, 4-phen-tpy) results in emission from the lowest energy, bridge-based metal-to-ligand charge transfer excited state (L(-•))Ru(b)(III)-OH(2) with an excited-state lifetime of 13 ± 1 ns. Near-diffusion-controlled quenching of the emission occurs with added HPO(4)(2-) and partial quenching by added acetate anion (OAc(-)) in buffered solutions with pH control. A Stern-Volmer analysis of quenching by OAc(-) gave a quenching rate constant of k(q) = 4.1 × 10(8) M(-1) • s(-1) and an estimated pK(a)* value of ~5 ± 1 for the [(bpy)(2)Ru(a)(II)(L(•-))Ru(b)(III)(bpy)(OH(2))(4+)]* excited state. Following proton loss and rapid excited-state decay to give [(bpy)(2)Ru(a)(II)(L)Ru(b)(II)(bpy)(OH)(3+)] in a H(2)PO(4)(-)/HPO(4)(2-) buffer, back proton transfer occurs from H(2)PO(4)(-) to give [(bpy)(2)Ru(a)(II)(L)Ru(b)(bpy)(OH(2))(4+)] with k(PT,2) = 4.4 × 10(8) M(-1) • s(-1). From the intercept of a plot of k(obs) vs. [H(2)PO(4)(-)], k = 2.1 × 10(6) s(-1) for reprotonation by water providing a dramatic illustration of kinetically limiting, slow proton transfer for acids and bases with pK(a) values intermediate between pK(a)(H(3)O(+)) = -1.74 and pK(a)(H(2)O) = 15.7.
[(bpy)(2)Ru(a)(II)(L)Ru(b)(II)(bpy)(OH(2))(4+)](bpy 是 2,2'-联吡啶;L 是桥连配体,4-苯并三吡啶)的配体桥连组装物在可见光激发下,发出来自最低能量的桥接金属-配体电荷转移激发态(L(-•))Ru(b)(III)-OH(2)的光,激发态寿命为 13 ± 1 ns。在缓冲溶液中加入 HPO(4)(2-)和部分加入醋酸根阴离子(OAc(-)),可以发生近扩散控制的发光猝灭,且 pH 值控制的缓冲溶液中 OAc(-)的部分猝灭。OAc(-)猝灭的 Stern-Volmer 分析给出了猝灭速率常数 k(q) = 4.1 × 10(8) M(-1) • s(-1),以及 [(bpy)(2)Ru(a)(II)(L(•-))Ru(b)(III)(bpy)(OH(2))(4+)]*激发态的估计 pK(a)*值约为 5 ± 1。在 H(2)PO(4)(-)/HPO(4)(2-)缓冲溶液中,质子丢失和快速激发态衰变生成[(bpy)(2)Ru(a)(II)(L)Ru(b)(II)(bpy)(OH)(3+)]后,从 HPO(4)(-)发生反向质子转移,得到 [(bpy)(2)Ru(a)(II)(L)Ru(b)(bpy)(OH(2))(4+)],k(PT,2) = 4.4 × 10(8) M(-1) • s(-1)。从 k(obs) 对 [H(2)PO(4)(-)]的线性关系的截距可以看出,质子通过水的重新质子化速率常数 k = 2.1 × 10(6) s(-1),这对于 pK(a)值在 pK(a)(H(3)O(+)) = -1.74 和 pK(a)(H(2)O) = 15.7 之间的酸和碱的动力学限制的、缓慢的质子转移提供了一个戏剧性的例证。