催化学报
催化學報
최화학보
CHINESE JOURNAL OF CATALYSIS
2010年
4期
423-428
,共6页
曾庆松%陈文凯%戴文新%章永凡%李奕%郭欣
曾慶鬆%陳文凱%戴文新%章永凡%李奕%郭訢
증경송%진문개%대문신%장영범%리혁%곽흔
密度泛函理论%吸附%非晶态合金%二氧化钛%一氧化碳%氧
密度汎函理論%吸附%非晶態閤金%二氧化鈦%一氧化碳%氧
밀도범함이론%흡부%비정태합금%이양화태%일양화탄%양
density functional theory%adsorption%amorphous alloy%titania%carbon monoxide%oxygen
运用密度泛函理论中广义梯度近似的PW91方法结合周期平板模型,研究了NiFeB_2合金簇在TiO_2(110)面的吸附模式.结果表明,NiFeB_2平行吸附在TiO_2面的O_t-O_t位最稳定,吸附能为526.4kJ/mol.为了探明NiFeB_2/TiO_2是否具有催化氧化CO活性,进一步研究了CO和O_2在NiFeB_2/TiO_2面的共吸附行为.结果表明,CO和O_2以Eley-Rideal机理共吸附在Fe上时,易形成碳酸盐,而以Langmuir-Hinshelwood机理共吸附在Fe上时,O_2发生分解,与Fe,Ni和B形成稳定的六元环.
運用密度汎函理論中廣義梯度近似的PW91方法結閤週期平闆模型,研究瞭NiFeB_2閤金簇在TiO_2(110)麵的吸附模式.結果錶明,NiFeB_2平行吸附在TiO_2麵的O_t-O_t位最穩定,吸附能為526.4kJ/mol.為瞭探明NiFeB_2/TiO_2是否具有催化氧化CO活性,進一步研究瞭CO和O_2在NiFeB_2/TiO_2麵的共吸附行為.結果錶明,CO和O_2以Eley-Rideal機理共吸附在Fe上時,易形成碳痠鹽,而以Langmuir-Hinshelwood機理共吸附在Fe上時,O_2髮生分解,與Fe,Ni和B形成穩定的六元環.
운용밀도범함이론중엄의제도근사적PW91방법결합주기평판모형,연구료NiFeB_2합금족재TiO_2(110)면적흡부모식.결과표명,NiFeB_2평행흡부재TiO_2면적O_t-O_t위최은정,흡부능위526.4kJ/mol.위료탐명NiFeB_2/TiO_2시부구유최화양화CO활성,진일보연구료CO화O_2재NiFeB_2/TiO_2면적공흡부행위.결과표명,CO화O_2이Eley-Rideal궤리공흡부재Fe상시,역형성탄산염,이이Langmuir-Hinshelwood궤리공흡부재Fe상시,O_2발생분해,여Fe,Ni화B형성은정적륙원배.
The loaded modes of NiFeB_2 supported on the TiO_2(l10) surface were studied with a periodic slab model by PW91 approach of GGA within the framework of density functional theory. The results of geometry optimization indicated that the most stable adsorption site was NiFeB_2 cluster parallel to the O_t-O_t, site with an adsorption energy of 526.4 kj/mol. In order to investigate whether the NiFeB_2/TiO_2 had the catalytic activity for CO oxidation, the co-adsorption of CO and O_2 molecules on NiFeB_2/TiO_2 surface was studied. The results showed that the CO and O_2 were co-adsorbed on the Fe site by the Eley-Rideal mechanism to form carbonate. When the CO and O_2 were co-adsorbed on the Fe site by the Langmuir-Hinshelwood mechanism, the oxygen decomposed and bonded with Fe, Ni, and B atoms, forming a stable six-membered ring.