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chw217木蟲 (正式寫手)
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[求助]
MS discover求助 已有1人參與
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用discover做離子在礦物表面的動力學(xué)模擬。 按照help實例進行 1.對表面分配力場、刪除化學(xué)鍵,然后運行minimizer 2.把離子粘到礦物表面,dynamic,出現(xiàn)了如下問題。 然后,對整個體系重新分配力場,但是問題又來了 求高手解答。另外,我的離子是Pb,是不是沒有對應(yīng)的力場。 |
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參見MS help文檔 Discover的tutorials: Forcefield typing in metal oxides,該教程中講解了問題出現(xiàn)的原因,以及解決的方法。 Forcefield typing uses predefined rules to assign a type to each atom in the structure. For example, a carbon atom in a benzene ring has a different forcefield type to that of one in an alkyl chain, as it will have different preferred geometric and energetic properties associated with it. When atoms are forcefield typed, the carbon atom in the benzene ring will be classified as c3a, whereas that in the chain will be c4. Typing the atoms allows the correct forcefield parameters to be used in determining the energies and forces for your particular system. Usually, forcefield typing is performed automatically by Discover using the general rules of the typing engine, so manual forcefield typing is not required. However, in certain cases, one has to forcefield type the atoms manually to ensure they are set correctly. In the case of ionic structures such as metal oxides, the bonds between the metal and the oxygen atoms are primarily ionic. This means that the concept of a covalent bond is not applicable to these structures and the bond must be deleted for the calculation to proceed. Conversely, the atoms must be bonded so that the forcefield typing engine can detect the environment of the atoms to predict the typing correctly. In these situations, you should use the typing engine in Discover to type the atoms and then remove the bonds before any calculations can be performed. Otherwise, Discover will look for bond parameters which do not exist. |

木蟲 (正式寫手)
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