Department of Chemistry, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.
Dalton Trans. 2018 Nov 13;47(44):15983-15993. doi: 10.1039/c8dt03626h.
Reaction of differing amounts of vanadyl sulfate with p-tert-butylthiacalix[4]areneH4 and base allows access to the vanadyl-sulfate species [NEt4]4[(VO)4(μ3-OH)4(SO4)4]·½H2O (1), [HNEt3]5[(VO)5(μ3-O)4(SO4)4]·4MeCN (2·4MeCN) and [NEt4]2[(VO)6(O)2(SO4)4(OMe)(OH2)]·MeCN (3·MeCN). Similar use of p-tert-butylsulfonylcalix[4]areneH4, p-tert-butylcalix[8]areneH8 or p-tert-butylhexahomotrioxacalix[3]areneH3 led to the isolation of [HNEt3]2[H2NEt2]2{[VO(OMe)]2p-tert-butylcalix[8-SO2]areneH2} (4), [HNEt3]2[V(O)2p-tert-butylcalix[8]areneH5] (5) and [HNEt3]2[VIV2VV4O11(OMe)8] (6), respectively. Dc magnetic susceptibility measurements were performed on powdered microcrystalline samples of 1-3 in the T = 300-2 K temperature range. Preliminary screening for electrochemical water oxidation revealed some activity for 2 with turnover frequency (TOF) and number (TON) of 2.2 × 10-4 s-1 and 6.44 × 10-6 (mmol O2/mmol cat.), respectively. The compound 3 showed an improved electrochemical activity in the presence of water. This is related to the increased number and the rate of electrons exchanged during oxidation of V4+ species, facilitated by protons generated in the water discharge process.
不同量的硫酸氧钒与对叔丁基硫杂杯[4]芳烃 H4 和碱反应,可得到硫酸氧钒物种 [NEt4]4[(VO)4(μ3-OH)4(SO4)4]·½H2O(1)、[HNEt3]5[(VO)5(μ3-O)4(SO4)4]·4MeCN(2·4MeCN)和 [NEt4]2[(VO)6(O)2(SO4)4(OMe)(OH2)]·MeCN(3·MeCN)。类似地,使用对叔丁基磺酰基杯[4]芳烃 H4、对叔丁基杯[8]芳烃 H8 或对叔丁基六氢同三氧杂杯[3]芳烃 H3,可分别得到 [HNEt3]2[H2NEt2]2{[VO(OMe)]2p-tert-butylcalix[8-SO2]areneH2}(4)、[HNEt3]2[V(O)2p-tert-butylcalix[8]areneH5](5)和 [HNEt3]2[VIV2VV4O11(OMe)8](6)。对 1-3 的微粉状微晶样品在 T = 300-2 K 温度范围内进行了直流磁化率测量。对电化学水氧化的初步筛选表明,化合物 2 具有一定的活性,其周转率(TOF)和数(TON)分别为 2.2×10-4 s-1 和 6.44×10-6(mmol O2/mmol cat.)。在水存在的情况下,化合物 3 显示出了改进的电化学活性。这与在水放电过程中产生的质子促进 V4+物种氧化时增加的电子数和交换速率有关。