nucleophile-reactant attack
親核試劑-反應物攻擊
nucleophile-reactant substitution
親核試劑-反應物取代
nucleophile-reactant addition
親核試劑-反應物加成
strong nucleophile-reactant
強親核試劑-反應物
nucleophile-reactant mechanism
親核試劑-反應物機制
nucleophile-reactant leaving
親核試劑-反應物離開
nucleophile-reactant reacts
親核試劑-反應物反應
nucleophile-reactant role
親核試劑-反應物角色
nucleophile-reactant present
親核試劑-反應物存在
nucleophile-reactant system
親核試劑-反應物系統
the nucleophile-reactant interaction initiated the reaction sequence.
親核試劑與反應物的相互作用啟動了反應序列。
a strong nucleophile-reactant pair is crucial for sn2 reactions.
強烈的親核試劑與反應物對對於SN2反應至關重要。
the nucleophile-reactant complex stabilized the transition state.
親核試劑與反應物的複合物穩定了過渡態。
careful selection of the nucleophile-reactant is vital for selectivity.
仔細選擇親核試劑與反應物對選擇性至關重要。
the nucleophile-reactant bond formation is the key step.
親核試劑與反應物之間的鍵形成是關鍵步驟。
steric hindrance around the nucleophile-reactant slowed the process.
親核試劑與反應物周圍的位阻減緩了反應過程。
the nucleophile-reactant approach determined the reaction mechanism.
親核試劑與反應物的接近方式決定了反應機制。
analyzing the nucleophile-reactant binding energy is insightful.
分析親核試劑與反應物的鍵結能具有啟發性。
the nucleophile-reactant leaving group departure finalized the reaction.
親核試劑與反應物的離去基團離開最終完成了反應。
modifying the nucleophile-reactant structure improved the yield.
修改親核試劑與反應物的結構提高了產率。
the nucleophile-reactant collision frequency influenced reaction rate.
親核試劑與反應物的碰撞頻率影響了反應速率。
nucleophile-reactant attack
親核試劑-反應物攻擊
nucleophile-reactant substitution
親核試劑-反應物取代
nucleophile-reactant addition
親核試劑-反應物加成
strong nucleophile-reactant
強親核試劑-反應物
nucleophile-reactant mechanism
親核試劑-反應物機制
nucleophile-reactant leaving
親核試劑-反應物離開
nucleophile-reactant reacts
親核試劑-反應物反應
nucleophile-reactant role
親核試劑-反應物角色
nucleophile-reactant present
親核試劑-反應物存在
nucleophile-reactant system
親核試劑-反應物系統
the nucleophile-reactant interaction initiated the reaction sequence.
親核試劑與反應物的相互作用啟動了反應序列。
a strong nucleophile-reactant pair is crucial for sn2 reactions.
強烈的親核試劑與反應物對對於SN2反應至關重要。
the nucleophile-reactant complex stabilized the transition state.
親核試劑與反應物的複合物穩定了過渡態。
careful selection of the nucleophile-reactant is vital for selectivity.
仔細選擇親核試劑與反應物對選擇性至關重要。
the nucleophile-reactant bond formation is the key step.
親核試劑與反應物之間的鍵形成是關鍵步驟。
steric hindrance around the nucleophile-reactant slowed the process.
親核試劑與反應物周圍的位阻減緩了反應過程。
the nucleophile-reactant approach determined the reaction mechanism.
親核試劑與反應物的接近方式決定了反應機制。
analyzing the nucleophile-reactant binding energy is insightful.
分析親核試劑與反應物的鍵結能具有啟發性。
the nucleophile-reactant leaving group departure finalized the reaction.
親核試劑與反應物的離去基團離開最終完成了反應。
modifying the nucleophile-reactant structure improved the yield.
修改親核試劑與反應物的結構提高了產率。
the nucleophile-reactant collision frequency influenced reaction rate.
親核試劑與反應物的碰撞頻率影響了反應速率。
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