Raman and Mid-IR Spectral Analysis of the Atacamite-Structure Hydroxyl/Deuteroxyl Nickel Chlorides Ni_(2)(OH/D)_(3)Cl
拉曼光谱和中红外光谱分析的的羟氯铜矿结构/氘镍氯化物镍(OH / D)3CL作者机构:Department of PhysicsGraduate School of Science and EngineeringSaga UniversitySaga 840-8502Japan Department of PhysicsCollege of ScienceTianjin Polytechnic UniversityTianjin 300160 Department of PhysicsFaculty of Science and EngineeringSaga UniversitySaga 840-8502Japan Synchrotron Light Application Center&Department of Electrical and Electronic EngineeringSaga UniversitySaga 840-8502Japan
出 版 物:《Chinese Physics Letters》 (中国物理快报(英文版))
年 卷 期:2011年第28卷第8期
页 面:314-317页
核心收录:
学科分类:080901[工学-物理电子学] 0809[工学-电子科学与技术(可授工学、理学学位)] 08[工学] 080401[工学-精密仪器及机械] 0804[工学-仪器科学与技术] 0803[工学-光学工程]
基 金:by a Grant-in-Aid for Scientific Research from the Japan Society for the Promotion of Science under Grant (No Kiban-B 19340100) Grant-in-Aid for Scientific Research on Priority Areas(No Tokutei 22014008)from the Ministry of Education,Culture,Sports,Science and Technology,Japan
主 题:temperature stretching transition
摘 要:Vibrational spectra(Raman 4000–95 cm−1 and mid-IR 4000–400 cm−1)of the atacamite-structure Ni_(2)(OH)3Cl,including a rarely reported kind of asymmetric trimetric hydrogen bond,as a member of the geometrically frustrated material series and its deuteride Ni_(2)(OD)3Cl are,to the best of our knowledge,reported for the first time and analyzed at room *** a comparative study of four spectra according to their crystal structural parameters,we assign OH stretching modes v(OH)in a functional group region(3700–3400 cm−1)and their deformation modesδ(NiOH/D)in the correlation peak region(900–600 cm−1)with the corresponding mode frequency ratiosωv(OD)/ωv(OH)≈73%andωδ(NiOD)/ωδ(NiOH)≈75%,and further self−consistently suggest Ni-O and Ni-Cl related modes in the fingerprint region(500–200 cm^(−1) and 200–0 cm−1,respectively)by use of the unified six-ligand NiO_(5)Cl and NiO_(4)Cl_(2) *** report may contribute to the spectral analysis of other hydroxyl transition-metal halides and to the understanding of the fundamental physics of their exotic magnetic geometrical frustration property from the spectral changes around the corresponding low transition temperatures.