首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Behaviour of Li~+ and Cu~(2+)in heated montmorillonite:Evidence from far-,mid-,and near-IR regions
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Behaviour of Li~+ and Cu~(2+)in heated montmorillonite:Evidence from far-,mid-,and near-IR regions

机译:Li〜+和Cu〜(2+)在加热的蒙脱石中的行为:来自遥远,中期和近红外地区的证据

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Infrared spectroscopy in the far(FIR),mid(MIR),and near(NIR)regions was used to study the structural changes of a thermally treated clay mineral montmorillonite saturated with Li~+ or Cu~(2+)cations(Li-JP and Cu-JP samples).Cation exchange capacity(CEC)values decreased by 89 and 64% in Li-and Cu-samples,respectively,heated at 300 deg C.The IR spectra confirm that the charge of exchangeable cations significantly affect their final position after fixation upon heating.No absorption bands related to the vibrations of interlayer cations were observed in the FIR spectra of unheated or heated samples;however,different modification of the complex vibrational mode involving motion of octahedral aluminium relative to the tetrahedral sheet was observed near 197 cm~(-1).The vibrations of OH groups in both MIR(V_(OH)3630-3670 cm~(-1))and NIR(2v_(OH),7070-7170 cm~(-1))regions proved that the Li~+ migrated into the octahedral vacancies,thus creating local trioctahedral domains,such as AlMgLiOH.Though Cu~(2+)has similar ionic radius as Li~+,no spectral features indicating its presence in the octahedral positions have been found even in the sample heated at 300 deg C.Fixed Cu(II)is supposed to be located deep in the ditrigonal cavities of the tetrahedral sheets of Cu-JP.The NIR spectra of heated Cu-JP samples show new components near 7045 and 5170 cm~(-1).These modes are believed to correspond to overtone bands associated with hydrated Cu~(2+)ions tightly bound in close proximity to the ditrigonal cavities of the basal surface(O_(basal)-Cu~(2+)-H_2O).The NIR spectra confirm that in Cu-JP heated at 200 deg C,then saturated with Li~+ and Cu~(2+)and heated again at 300 deg C small Li~+ ions migrate into the vacant octahedral sites even though Cu(II)have been trapped in the hexagonal cavities of the tetrahedral sheets in the course of previous heat treatment.
机译:FIR(FIR),中间(MIR)和附近(NIR)区域的红外光谱学用于研究饱和含有Li +或Cu〜(2+)阳离子的热处理粘土矿物蒙脱石的结构变化(Li- JP和Cu-JP样品).cation交换能力(CEC)分别在Li-and和Cu样品中减少89%和64%,在300℃下加热。IR光谱确认可更换阳离子的电荷显着影响其在加热后固定后的最终位置。在未加热的或加热样品的FIR光谱中观察到与中间层阳离子的振动相关的No吸收带;然而,观察到涉及八面体铝运动相对于四面体片材的致动型铝的复合振动模式的不同修饰近197厘米〜(-1)。MIR中OH组的振动(V_(OH)3630-3670cm〜(-1))和nir(2v_(OH),7070-7170cm〜(-1))地区证明李〜+迁移到八面体空缺中,从而产生局部三氧化面域,如Almglioh.thoug H Cu〜(2+)具有与Li〜+类似的离子半径,也没有表示甚至在300℃加热的样品中发现其在八面体位置存在的光谱特征。被认为是深的在Cu-JP的四面体片材的偶极腔中。加热的Cu-JP样品的NIR光谱显示出近7045和5170cm〜(-1)附近的新组分。这些模式被认为对应于与水合Cu相关的泛音带〜 (2+)离子紧密地靠近基底表面的偶氮腔(O_(基础)-cu〜(2 +) - h_2o)。NIR光谱确认在CU-JP在200℃加热时,然后用Li〜+和Cu〜(2+)饱和并在300℃下再次加热,即使Cu(II)被困在过程中的六边形腔中的呼吸空腔中,也迁移到空气八面体位点。先前的热处理。

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