针对锂介导合成氨(LM-NRR)过程中存在的水污染问题,通过对比实验及扫描电子显微镜(SEM)、X射线衍射仪(XRD)、X射线光电子能谱仪(XPS)等表征手段,探讨了含水量对LM-NRR体系的性能影响及其在反应界面中的作用机理。结果表明,无水条件下的L...针对锂介导合成氨(LM-NRR)过程中存在的水污染问题,通过对比实验及扫描电子显微镜(SEM)、X射线衍射仪(XRD)、X射线光电子能谱仪(XPS)等表征手段,探讨了含水量对LM-NRR体系的性能影响及其在反应界面中的作用机理。结果表明,无水条件下的LM-NRR体系具有较好的氨合成性能,在反应时间为120 min、N2流速为4 m L·min^(-1)、电流密度为3 m A·cm^(-2)条件下的氨合成速率可达0.0124μg·s^(-1)·cm^(-2),法拉第效率为7.05%。含水量对LM-NRR体系的影响显著,会极大地降低体系的氨合成速率及法拉第效率。这主要是由于反应界面上的水会加剧竞争性析氢反应(HER)、促进电解质中Li BF_(4)的水解以及钝化表面活性锂位点,进而降低了体系的氨反应活性。展开更多
The polarization switching plays a crucial role in controlling the final products in the catalytic pro-cess.The effect of polarization orientation on nitrogen reduction was investigated by anchoring transition metal a...The polarization switching plays a crucial role in controlling the final products in the catalytic pro-cess.The effect of polarization orientation on nitrogen reduction was investigated by anchoring transition metal atoms to form active centers on ferroelectric material In_(2)Se_(3).During the polariza-tion switching process,the difference in surface electrostatic potential leads to a redistribution of electronic states.This affects the interaction strength between the adsorbed small molecules and the catalyst substrate,thereby altering the reaction barrier.In addition,the surface states must be considered to prevent the adsorption of other small molecules(such as *O,*OH,and *H).Further-more,the V@↓-In_(2)Se_(3) possesses excellent catalytic properties,high electrochemical and thermody-namic stability,which facilitates the catalytic process.Machine learning also helps us further ex-plore the underlying mechanisms.The systematic investigation provides novel insights into the design and application of two-dimensional switchable ferroelectric catalysts for various chemical processes.展开更多
文摘针对锂介导合成氨(LM-NRR)过程中存在的水污染问题,通过对比实验及扫描电子显微镜(SEM)、X射线衍射仪(XRD)、X射线光电子能谱仪(XPS)等表征手段,探讨了含水量对LM-NRR体系的性能影响及其在反应界面中的作用机理。结果表明,无水条件下的LM-NRR体系具有较好的氨合成性能,在反应时间为120 min、N2流速为4 m L·min^(-1)、电流密度为3 m A·cm^(-2)条件下的氨合成速率可达0.0124μg·s^(-1)·cm^(-2),法拉第效率为7.05%。含水量对LM-NRR体系的影响显著,会极大地降低体系的氨合成速率及法拉第效率。这主要是由于反应界面上的水会加剧竞争性析氢反应(HER)、促进电解质中Li BF_(4)的水解以及钝化表面活性锂位点,进而降低了体系的氨反应活性。
文摘The polarization switching plays a crucial role in controlling the final products in the catalytic pro-cess.The effect of polarization orientation on nitrogen reduction was investigated by anchoring transition metal atoms to form active centers on ferroelectric material In_(2)Se_(3).During the polariza-tion switching process,the difference in surface electrostatic potential leads to a redistribution of electronic states.This affects the interaction strength between the adsorbed small molecules and the catalyst substrate,thereby altering the reaction barrier.In addition,the surface states must be considered to prevent the adsorption of other small molecules(such as *O,*OH,and *H).Further-more,the V@↓-In_(2)Se_(3) possesses excellent catalytic properties,high electrochemical and thermody-namic stability,which facilitates the catalytic process.Machine learning also helps us further ex-plore the underlying mechanisms.The systematic investigation provides novel insights into the design and application of two-dimensional switchable ferroelectric catalysts for various chemical processes.