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Rare earth co-permeation of (NH4)3[CrMo6O24H6]·7H2O was reported and the conductivity of (NH4)3[CrMo6O24H6]was improved by 6.734×109 times. X-ray fluorescence spectrometry (XRF), thermogravimetry-differential thermalanalysis (TG-DTA), X-ray diffraction (XRD) have been used to character (NH4)3[CrMo6 O24H6]·7H2O and permeatedsample. Experimental results showed that Nd could be permeated into the body of this sample and the XRDpatterns showed great difference between (NH4)3[CrMo6O24H6]·7H2O and permeated sample. The structure of(NH4)3[CrMo6O24H6]·7H2O was destroyed and new compound MoN perhaps formed.
Rare earth co-permeation of (NH4) 3 [CrMo6O24H6] · 7H2O was reported and the conductivity of (NH4) 3 [CrMo6O24H6] was improved by 6.734 × 109 times. X- ray fluorescence spectrometry (XRF), thermogravimetry-differential thermalanalysis TG-DTA), X-ray diffraction (XRD) has been used to character (NH4) 3 [CrMo6 O24H6] · 7H2O and permeated samples. The experimental results showed that Nd could be permeated into the body of this sample and the XRD patterns showed great difference (NH4) 3 [CrMo6O24H6] · 7H2O and permeated sample. The structure of (NH4) 3 [CrMo6O24H6] · 7H2O was destroyed and new compound MoN may formed.