Javascript must be enabled to continue!
Crystal structure of Tutton’s salts, Cs2[MII(H2O)6](SO4)2, MII = Mg, Mn, Fe, Co, Ni, Zn
View through CrossRef
Abstract Cs2H12MgO14S2, monoclinic, P121/a1 (No. 14), a = 9.338(2) Å, b = 12.849(4) Å, c = 6.361(2) Å, β = 107.07(2)°, V = 729.6 Å3, Z = 2, Rgt(F) = 0.017, wRref(F2) = 0.041, T = 293 K. Cs2H12MnO14S2, monoclinic, P121/a1 (No. 14), a = 9.418(3) Å, b = 12.963(2) Å, c = 6.386(3) Å, β = 107.17(4)°, V = 744.9 Å3, Z = 2, Rgt(F) = 0.017, wRref(F2) = 0.030, T = 293 K. Cs2FeO14H12S2, monoclinic, P121/a1 (No. 14), a = 9.357(2) Å, b = 12.886(2) Å, c = 6.381(1) Å, β = 106.94(1)°, V = 736.0 Å3, Z = 2, Rgt(F) = 0.015, wRref(F2) = 0.030, T = 293 K. CoCs2H12O14S2, monoclinic, P121/a1 (No. 14), a = 9.318(1) Å, b = 12.826(3) Å, c = 6.3650(9) Å, β = 107.13(1)°, V = 727.0 Å3, Z = 2, Rgt(F) = 0.021, wRref(F2) = 0.049, T = 293 K. Cs2H12NiO14S2, monoclinic, P121/a1 (No. 14), a = 9.259(2) Å, b = 12.767(2) Å, c = 6.358(1) Å, β = 107.00(2)°, V = 718.7 Å3, Z = 2, Rgt(F) = 0.014, wRref(F2) = 0.027, T = 293 K. Cs2H12O14S2Zn, monoclinic, P121/a1 (No. 14), a = 9.314(2) Å, b = 12.817(2) Å, c = 6.369(2) Å, β = 106.94(2)°, V = 727.3 Å3, Z = 2, Rgt(F) = 0.015, wRref(F2) = 0.033, T = 293 K.
Walter de Gruyter GmbH
Title: Crystal structure of Tutton’s salts, Cs2[MII(H2O)6](SO4)2, MII = Mg, Mn, Fe, Co, Ni, Zn
Description:
Abstract Cs2H12MgO14S2, monoclinic, P121/a1 (No.
14), a = 9.
338(2) Å, b = 12.
849(4) Å, c = 6.
361(2) Å, β = 107.
07(2)°, V = 729.
6 Å3, Z = 2, Rgt(F) = 0.
017, wRref(F2) = 0.
041, T = 293 K.
Cs2H12MnO14S2, monoclinic, P121/a1 (No.
14), a = 9.
418(3) Å, b = 12.
963(2) Å, c = 6.
386(3) Å, β = 107.
17(4)°, V = 744.
9 Å3, Z = 2, Rgt(F) = 0.
017, wRref(F2) = 0.
030, T = 293 K.
Cs2FeO14H12S2, monoclinic, P121/a1 (No.
14), a = 9.
357(2) Å, b = 12.
886(2) Å, c = 6.
381(1) Å, β = 106.
94(1)°, V = 736.
0 Å3, Z = 2, Rgt(F) = 0.
015, wRref(F2) = 0.
030, T = 293 K.
CoCs2H12O14S2, monoclinic, P121/a1 (No.
14), a = 9.
318(1) Å, b = 12.
826(3) Å, c = 6.
3650(9) Å, β = 107.
13(1)°, V = 727.
0 Å3, Z = 2, Rgt(F) = 0.
021, wRref(F2) = 0.
049, T = 293 K.
Cs2H12NiO14S2, monoclinic, P121/a1 (No.
14), a = 9.
259(2) Å, b = 12.
767(2) Å, c = 6.
358(1) Å, β = 107.
00(2)°, V = 718.
7 Å3, Z = 2, Rgt(F) = 0.
014, wRref(F2) = 0.
027, T = 293 K.
Cs2H12O14S2Zn, monoclinic, P121/a1 (No.
14), a = 9.
314(2) Å, b = 12.
817(2) Å, c = 6.
369(2) Å, β = 106.
94(2)°, V = 727.
3 Å3, Z = 2, Rgt(F) = 0.
015, wRref(F2) = 0.
033, T = 293 K.
Related Results
The success of SII, MII-1, MII-2, MII-3, and QT dispersion in predicting the walled-off pancreatic necrosis development in acute pancreatitis in the emergency department: An observational study
The success of SII, MII-1, MII-2, MII-3, and QT dispersion in predicting the walled-off pancreatic necrosis development in acute pancreatitis in the emergency department: An observational study
walled-off pancreatic necrosis (WOPN) is one of the complications of acute pancreatitis (AP) with high mortality. A method to predict the development of WOPN in AP patients admitte...
The association between multi-inflammatory index and long-term mortality in post-myocardial infarction patients treated with percutaneous coronary intervention
The association between multi-inflammatory index and long-term mortality in post-myocardial infarction patients treated with percutaneous coronary intervention
BackgroundInflammation plays a crucial role in the pathophysiology of acute myocardial infarction (AMI), and various inflammatory markers have been associated with patient outcomes...
Photodetachment and photofragmentation pathways in the [(CO2)2(H2O)m]− cluster anions
Photodetachment and photofragmentation pathways in the [(CO2)2(H2O)m]− cluster anions
The mass-selected [(CO2)2(H2O)m]− cluster anions are studied using a combination of photoelectron imaging and photofragment mass spectroscopy at 355nm. Photoelectron imaging studie...
Thermal evolution and crystal structure features of Cs<sub>2</sub>SO<sub>4</sub> and Cs<sub>2</sub>Ca<sub>3</sub>(SO<sub>4<
Thermal evolution and crystal structure features of Cs<sub>2</sub>SO<sub>4</sub> and Cs<sub>2</sub>Ca<sub>3</sub>(SO<sub>4<
For the first time, the thermal expansion of two modifications of α- and β-Cs2SO4, as well as the compound Cs2Ca3(SO4)4, was studied by the high-temperature powder X-ray diffractio...
Theoretical study of the electronic states of CS2++
Theoretical study of the electronic states of CS2++
Three-dimensional potential energy functions (PEFs) have been generated for the X3Σg−, a1Δg, b1Σg+, and c1Σu− states of CS2++ using internally contracted multi-reference configurat...
Exchanges of salts and volatiles in Europa’s hydrosphere
Exchanges of salts and volatiles in Europa’s hydrosphere
Ocean worlds have become a major focus of interest in exobiology and planetary science due to their internal structure and dynamics [1]. Among them, Europa is one of the most promi...
Reflectance Spectroscopy of Ammonium Salts: Implications for Planetary Surface Composition
Reflectance Spectroscopy of Ammonium Salts: Implications for Planetary Surface Composition
Recent discoveries have demonstrated that the surfaces of Mars, Ceres and other celestial bodies, as well as asteroids and comets, are characterized by the presence of ammonium-bea...
Bands Selection for Multispectral Detection Mode of Lunar Mineralogical Spectrometer of China’s Chang’E-5 and Chang’E-6 Missions
Bands Selection for Multispectral Detection Mode of Lunar Mineralogical Spectrometer of China’s Chang’E-5 and Chang’E-6 Missions
Introduction:  In December 2020, China’s Chang’E-5 (CE-5) mission successfully landed in the northeastern part of Oceanus Procellarum on the Moon and a...

