金属键强弱为什么与离子半径成逆相关,与金属内部自由

2025-04-07 05:06:09
推荐回答(2个)
回答1:

金属键(metallic bond)是化学键的一种,主要在金属中存在。由自由电子及排列成晶格状的金属离子之间的静电吸引力组合而成。由于电子的自由运动,金属键没有固定的方向,因而是非极性键。金属键有金属的很多特性。例如一般金属的熔点、沸点随金属键的强度而升高。其强弱通常与金属离子半径成逆相关,与金属内部自由电子密度成正相关(便可粗略看成与原子外围电子数成正相关)。

离子键 (ionic bond)指带相反电荷离子之间的相互作用。离子键属于化学键,大多数的盐,由碱金属或碱土金属形成的碱,活泼金属氧化物都有离子键。含有离子键的化合物称为离子化合物。离子键与物体的熔沸点和硬度有关。

共价键(covalent bond),是化学键的一种,两个或多个原子共同使用它们的外层电子,在理想情况下达到电子饱和的状态,由此组成比较稳定的化学结构叫做共价键,或者说共价键是原子间通过共用电子对所形成的相互作用。其本质是原子轨道重叠后,高概率地出现在两个原子核之间的电子与两个原子核之间的电性作用。需要指出:氢键虽然存在轨道重叠,但通常不算作共价键,而属于分子间作用力。共价键与离子键之间没有严格的界限,通常认为,两元素电负性差值大于1.7时,成离子键;小于1.7时,成共价键。

回答2:

当然半径越小作用力越大。

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