Tan Kim Seng, Lunchev Andrey V, Stuparu Mihaiela C, Grimsdale Andrew C, Yazami Rachid
Energy Research Institute (ERI@N), Nanyang Technological University; School of Materials Science and Engineering, Nanyang Technological University.
School of Materials Science and Engineering, Nanyang Technological University.
J Vis Exp. 2016 Oct 10(116):54366. doi: 10.3791/54366.
The authors report on conductivity studies carried out on lithium solvated electron solutions (LiSES) prepared using two types of polyaromatic hydrocarbons (PAH), namely 1,3,5-triphenylbenzene and corannulene, as electron receptors. The solid PAHs were first dissolved in tetrahydrofuran (THF) to form a solution. Metallic lithium was then dissolved into these PAH/THF solutions to yield either blue or greenish blue solutions, colors which are indicative of the presence of solvated electrons. Conductivity measurements at ambient temperature carried out on 1,3,5-triphenylbenzene-based LiSES, denoted by LixTPB(THF)24.7 (x = 1, 2, 3, 4), showed an increase of conductivity with increase of Li:PAH ratio from x = 1 to 2. However, the conductivity gradually decreased upon further increasing the ratio. Indeed the conductivity of LixTPB(THF)24.7 for x = 4 is even lower than for x = 1. Such behavior is similar to that of the previously reported LiSES prepared from biphenyl and naphthalene. Conductivity versus temperature measurements on corannulene-based LiSES, denoted by LixCor(THF)247 (x = 1, 2, 3, 4, 5), showed linear relationships with negative slopes, indicating a metallic behavior similar to biphenyl and naphthalene-based LiSES.
作者报告了对使用两种多环芳烃(PAH),即1,3,5 - 三苯基苯和碗烯作为电子受体制备的锂溶剂化电子溶液(LiSES)进行的电导率研究。首先将固态PAH溶解在四氢呋喃(THF)中形成溶液。然后将金属锂溶解到这些PAH/THF溶液中,得到蓝色或蓝绿色溶液,这些颜色表明存在溶剂化电子。对基于1,3,5 - 三苯基苯的LiSES(表示为LixTPB(THF)24.7,其中x = 1、2、3、4)在室温下进行的电导率测量表明,随着Li:PAH比例从x = 1增加到2,电导率增加。然而,进一步增加该比例时,电导率逐渐降低。实际上,x = 4时LixTPB(THF)24.7的电导率甚至低于x = 1时的电导率。这种行为与先前报道的由联苯和萘制备的LiSES相似。对基于碗烯的LiSES(表示为LixCor(THF)247,其中x = 1、2、3、4、5)进行的电导率与温度测量显示出具有负斜率的线性关系,表明其具有与基于联苯和萘的LiSES相似的金属行为。