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Adsorption and vibrational spectroscopy of ammonia at mordenite:Ab initio study

机译:丝光沸石上氨的吸附和振动光谱:从头算

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The adsorption of ammonia at various active centers at the outer and inner surfaces of mordenite,involving Br0nsted acid (BA) sites,terminal silanol groups,and Lewis sites has been investigated using periodic ab initio density-functional theory.It is shown that ammonia forms an ammonium ion when adsorbed at strong BA sites.The calculated adsorption energies for different BA sites vary in the interval from 111.5 to 174.7 kJ/mol depending on the local environment of the adduct.The lowest adsorption energy is found for a monodentate complex in the main channel,the highest for a tetradentate configuration in the side pocket.At weak BA sites such as terminal silanol groups or a defect with a BA site in a two-membered ring ammonia is H bonded via the N atom.Additional weak H bonds are formed between H atoms of ammonia and O atoms of neighboring terminal silanol groups.The calculated adsorption energies for such adducts range between 61.7 and 70.9 kJ/mol.The interaction of ammonia with different Lewis sites is shown to range between weak (DELTAE_(ads)=17.8kJ/mol) and very strong (DELTAE_(ads)=161.7kJ/mol),the strongest Lewis site being a tricoordinated Al atom at the outer surface.Our results are in very good agreement with the distribution of desorption energies estimated from temperature-programmed desorption (TPD) and microcalorimetry experiments,the multipeaked structure of the TPD spectra is shown to arise from strong and weak Br0nsted and Lewis sites.The vibrational properties of the adsorption complexes are investigated using a force-constant approach.The stretching and bending modes of NH^ adsorbed to the zeolite are strongly influenced by the local environment.The strongest redshift is calculated for the asymmetric stretching mode involving the NH group hydrogen bonded to the bridging O atom of the B A site,the shift is largest for a monodentate and smallest for a tetradentate adsorption complex.The reduced symmetry of the adsorbate also leads to a substantial splitting of the stretching and bending modes.In agreement with experiment we show that the main vibrational feature which differentiates coordinatively bonded ammonia from a hydrogen-bonded ammonium ion is the absence of bending modes above 1630 cm~(-1) and in the region between 1260 and 1600 cm~(-1),and a low-frequency bending band in the range from 1130 to 1260 cm~(-1).The calculated distribution of vibrational frequencies agrees very well with the measured infrared adsorption spectra.From the comparison of the adsorption data and the vibrational spectra we conclude that due to the complex adsorption geometry the redshift of the asymmetric stretching is a better measure of the acidity of an active sites than the adsorption energy.
机译:利用周期性从头算密度泛函理论研究了丝光沸石内外表面活性中心的氨吸附,布朗斯台德酸(BA)位点,末端硅烷醇基和路易斯位点的吸附。在强BA位置吸附铵离子时,根据不同的加合物环境,计算得出的不同BA位置的吸附能在111.5至174.7 kJ / mol的范围内变化。主通道是侧袋中四齿构型的最高通道。在弱BA位点(例如末端硅烷醇基或两元环氨中具有BA位的缺陷)通过N原子进行H键连接。氨的H原子与相邻的末端硅烷醇基的O原子之间形成了这种加合物,计算出的吸附能在61.7至70.9 kJ / mol之间。 ENT的Lewis位点显示介于弱(DELTAE_(ads)= 17.8kJ / mol)和非常强的(DELTAE_(ads)= 161.7kJ / mol)之间,最强的Lewis位点是外表面的三配位Al原子。结果与通过程序升温脱附(TPD)和微量热法实验估算出的脱附能分布非常吻合,TPD谱的多峰结构显示出由强布朗斯台德点和弱布朗斯台德点和路易斯点产生。采用力恒定方法研究了NH3的吸附配合物,吸附在分子筛上的NH ^的拉伸和弯曲模式受当地环境的影响很大,对于不对称的拉伸模式计算出最强的红移。 BA位点的O原子,对于单齿的吸附复合物,位移最大,而对四齿的吸附复合物,位移最小。吸附物的对称性降低也导致大量的spl与实验相吻合,我们表明,使配位键合的氨与氢键合的铵离子区分开的主要振动特征是在1630 cm〜(-1)以上以及在从1260和1600 cm〜(-1)到1130至1260 cm〜(-1)的低频弯曲带。计算出的振动频率分布与实测红外吸收光谱非常吻合。根据吸附数据和振动光谱,我们得出结论,由于复杂的吸附几何形状,非对称拉伸的红移比吸附能更好地衡量了活性位点的酸度。

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