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首页> 外文期刊>Bulletin of the Korean Chemical Society >Universal Structure Conversion Method for Organic Molecules: From Atomic Connectivity to Three-Dimensional Geometry
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Universal Structure Conversion Method for Organic Molecules: From Atomic Connectivity to Three-Dimensional Geometry

机译:有机分子的通用结构转换方法:从原子连通性到三维几何

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We present a powerful method for the conversion of molecular structures from atomic connectivity to bond orders to three-dimensional (3D) geometries. There are a number of bond orders and 3D geometries corresponding to a given atomic connectivity. To uniquely determine an energetically more favorable one among them, we use general chemical rules without invoking any empirical parameter, which makes our method valid for any organic molecule. Specifically, we first assign a proper bond order to each atomic pair in the atomic connectivity so as to maximize their sum and the result is converted to a SMILES notation using graph theory. The corresponding 3D geometry is then obtained using force field or ab initio calculations. This method successfully reproduced the bond order matrices and 3D geometries of 10000 molecules randomly sampled from the PubChem database with high success rates of near 100% except a few exceptional cases. As an application, we demonstrate that it can be used to search for molecular isomers efficiently.
机译:我们提出了一种强大的方法,可将分子结构从原子连接性转变为键序到三维(3D)几何形状。与给定的原子连通性相对应,有许多键序和3D几何形状。为了唯一地确定其中一种在能量上更有利的方法,我们使用一般化学规则而不调用任何经验参数,这使我们的方法对任何有机分子均有效。具体来说,我们首先为原子连接中的每个原子对分配一个适当的键顺序,以使它们的和最大化,然后使用图论将结果转换为SMILES表示法。然后使用力场或从头算起获得相应的3D几何形状。该方法成功地重现了从PubChem数据库中随机采样的10000个分子的键序矩阵和3D几何形状,除少数例外情况外,成功率均接近100%。作为一个应用程序,我们证明了它可以用于有效地搜索分子异构体。

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