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超盐酸:修订间差异

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===制备===
===制备===
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">我们要做的是在0.1s之内使生成的TDTC稳定下来。连接在四元环上的氢在离去后,该氯原子由sp?杂化转变为sp?d?杂化(三角双锥变为正八面体,涉及电子的超跃迁),使得四元环上有了14π电子,具有芳香性而更加稳定,再加上含氯基团的吸电子效应,使得这个氢的酸性强于其他9个氢,甚至同“魔键化”的超</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw612lf0CHtOlhlBgH5orPqNvt6XyibVFgk4fbLMgytUg5Z4Q4OO30Ri8SAtVjSx1NjJY8K44RtEayMYrEStIbaQDnF3zxxA+jNrDZcQ/hcb0k3+ygBcixckx87iJKpPPBEkHYYwOqk8rQikDNXSbp2GRBg4xc7hfKm52Pah4egTNMg== 盐酸]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">相当。而当失去1个</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw62dSjz8hoYOmiJbPpyCf0PfImOuUl9obIdesUqvhcRz+hXSuwz9b96EragWmZ1jer1XQuxoOXhQsXMy1KBvIgswnswldODULTXzdhl0MRtugaflV7/4/ZamxqKYUSGO7vXDEb07ntm6k67KFWNUazCO6BmVeCSyobH/mKLhTd7M9zA8Zu4mdgY0 氢离子]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">时,[n185e180]180-形成条件就会被破坏(失去了氢的氯</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw63AG9KReqkepJxWcnTM2u5UImOuUl9obIdesUqvhcRz+hXSuwz9b96EragWmZ1jer1XQuxoOXhQsXMy1KBvIgswnswldODULTXzdhl0MRtugaflV7/4/ZamxqKYUSGO7vXDEb07ntm6k67KFWNUazCO6BmVeCSyobH/mKLhTd7M9zA8Zu4mdgY0 原子核]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">变得稳定),使得TDTC稳定下来。因此我们需要一种碱使强酸性的氢离去,又不至于太强使所有氢全部离去而使其再次不稳定而形成超盐酸根。什么物质具有这种适当的碱性呢?</span>
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">我们要做的是在0.1s之内使生成的TDTC稳定下来。连接在四元环上的氢在离去后,该氯原子由sp<sup>3</sup>d杂化转变为sp<sup>3</sup>d<sup>2</sup>杂化(三角双锥变为正八面体,涉及电子的超跃迁),使得四元环上有了14π电子,具有芳香性而更加稳定,再加上含氯基团的吸电子效应,使得这个氢的酸性强于其他9个氢,甚至同“魔键化”的超</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw612lf0CHtOlhlBgH5orPqNvt6XyibVFgk4fbLMgytUg5Z4Q4OO30Ri8SAtVjSx1NjJY8K44RtEayMYrEStIbaQDnF3zxxA+jNrDZcQ/hcb0k3+ygBcixckx87iJKpPPBEkHYYwOqk8rQikDNXSbp2GRBg4xc7hfKm52Pah4egTNMg== 盐酸]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">相当。而当失去1个</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw62dSjz8hoYOmiJbPpyCf0PfImOuUl9obIdesUqvhcRz+hXSuwz9b96EragWmZ1jer1XQuxoOXhQsXMy1KBvIgswnswldODULTXzdhl0MRtugaflV7/4/ZamxqKYUSGO7vXDEb07ntm6k67KFWNUazCO6BmVeCSyobH/mKLhTd7M9zA8Zu4mdgY0 氢离子]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">时,[n<sub>185</sub>e<sub>180</sub>]<sup>180-</sup>形成条件就会被破坏(失去了氢的氯</span>[http://jump2.bdimg.com/safecheck/index?url=rN3wPs8te/pL4AOY0zAwhz3wi8AXlR5gsMEbyYdIw63AG9KReqkepJxWcnTM2u5UImOuUl9obIdesUqvhcRz+hXSuwz9b96EragWmZ1jer1XQuxoOXhQsXMy1KBvIgswnswldODULTXzdhl0MRtugaflV7/4/ZamxqKYUSGO7vXDEb07ntm6k67KFWNUazCO6BmVeCSyobH/mKLhTd7M9zA8Zu4mdgY0 原子核]<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">变得稳定),使得TDTC稳定下来。因此我们需要一种碱使强酸性的氢离去,又不至于太强使所有氢全部离去而使其再次不稳定而形成超盐酸根。什么物质具有这种适当的碱性呢?</span>
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">
(1)氧酸H₂OO₃</span>[[File:Bc5974ec54e736d1fc942d7d93504fc2d4626993.png|left]]   <span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">机理很简单,利用了氧</span><span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">酸的质子化,但是其对用于超盐酸合成的催化剂Ka-Sb合金的腐蚀严重。</span><span style="color:rgb(51,51,51);font-size:14px;line-height:24px;"><br/>
(1)氧酸H₂OO₃</span>[[File:Bc5974ec54e736d1fc942d7d93504fc2d4626993.png|left]]   <span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">机理很简单,利用了氧</span><span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">酸的质子化,但是其对用于超盐酸合成的催化剂Ka-Sb合金的腐蚀严重。</span><span style="color:rgb(51,51,51);font-size:14px;line-height:24px;"><br/>
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<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;"><br/>
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;"><br/>
(3)定量的超氢氧化钠(钾,等等)+锑场</span>
(3)定量的超氢氧化钠(钾,等等)+锑场</span>
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">反应放出的大量的热足以使溶液剧烈沸腾,利用锑场控制热量将杂质全部蒸出,留下纯度很高的NaH9Cl10晶体。</span>
<span style="color:rgb(51,51,51);font-size:14px;line-height:24px;">反应放出的大量的热足以使溶液剧烈沸腾,利用锑场控制热量将杂质全部蒸出,留下纯度很高的NaH<sub>9</sub>Cl<sub>10</sub>晶体。</span>


===σ配位===
===σ配位===