Zhai Hua-Jin, Wang Lai-Sheng, Jena P, Gutsev G L, Bauschlicher C W
Department of Physics, Washington State University, Richland, Washington 99352, USA.
J Chem Phys. 2004 May 15;120(19):8996-9008. doi: 10.1063/1.1701754.
Photoelectron spectroscopy (PES) is combined with density functional theory (DFT) to study the monochromium carbide clusters CrCn- and CrCn (n = 2-8). Well-resolved PES spectra were obtained, yielding structural, electronic, and vibrational information about both the anionic and neutral clusters. Experimental evidence was observed for the coexistence of two isomers for CrC2-, CrC3-, CrC4-, and CrC6-. Sharp and well-resolved PES spectra were observed for CrCn- (n = 4,6,8), whereas broad spectra were observed for CrC5- and CrC7-. Extensive DFT calculations using the generalized gradient approximation were carried out for the ground and low-lying excited states of all the CrCn- and CrCn species, as well as coupled-cluster calculations for CrC2- and CrC2. Theoretical electron affinities and vertical detachment energies were calculated and compared with the experimental data to help the assignment of the ground states and obtain structural information. We found that CrC2- and CrC3- each possess a close-lying cyclic and linear structure, which were both populated experimentally. For the larger CrCn- clusters with n = 4, 6, 8, linear structures are the overwhelming favorite, giving rise to the sharp PES spectral features. CrC7- was found to have a cyclic structure. The broad PES spectra of CrC5- suggested a cyclic structure, whereas the DFT results predicted a linear one.
光电子能谱(PES)与密度泛函理论(DFT)相结合,用于研究单碳化铬团簇CrCn-和CrCn(n = 2 - 8)。获得了分辨良好的PES光谱,给出了有关阴离子和中性团簇的结构、电子和振动信息。观察到实验证据表明CrC2-、CrC3-、CrC4-和CrC6-存在两种异构体共存。观察到CrCn-(n = 4,6,8)的PES光谱尖锐且分辨良好,而CrC5-和CrC7-的光谱较宽。对所有CrCn-和CrCn物种的基态和低激发态进行了使用广义梯度近似的广泛DFT计算,以及对CrC2-和CrC2的耦合簇计算。计算了理论电子亲和能和垂直脱附能,并与实验数据进行比较,以帮助确定基态并获得结构信息。我们发现CrC2-和CrC3-各自具有紧密相邻的环状和线性结构,这两种结构在实验中都有出现。对于n = 4、6、8的较大CrCn-团簇,线性结构是压倒性的首选,这导致了尖锐的PES光谱特征。发现CrC7-具有环状结构。CrC5-的宽PES光谱表明其具有环状结构,而DFT结果预测为线性结构。