期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Interface engineering via temperature-dependent self-transformation on SnS2/SnS for enhanced piezocatalysis
1
作者 Wenrou Tian Jun Han +4 位作者 Najun Li Dongyun Chen Qingfeng Xu Hua Li Jianmei Lu 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第9期166-179,共14页
Heterojunction has been widely used in vibration-driven piezocatalysis for enhanced charges separation,while the weak interfaces seriously affect the efficiency during mechanical deformations due to prepared by tradit... Heterojunction has been widely used in vibration-driven piezocatalysis for enhanced charges separation,while the weak interfaces seriously affect the efficiency during mechanical deformations due to prepared by traditional step-by-step methods.Herein,the intimate contact interfaces with shared S atoms are ingeniously constructed in SnS_(2)/SnS anchored on porous carbon by effective interface engineering,which is in-situ derived from temperature-dependent self-transformation of SnS_(2).Benefiting from intimate contact interfaces,the piezoelectricity is remarkably improved due to the larger interfacial dipole moment caused by uneven distribution of charges.Importantly,vibration-induced piezoelectric polarization field strengthens the interfacial electric field to further promote the separation and migration of charges.The dynamic charges then transfer in porous carbon with high conductivity and adsorption for significantly improved piezocatalytic activity.The degradation efficiency of bisphenol A(BPA)is 6.3 times higher than SnS_(2) and H2 evolution rate is increased by 3.8 times.Compared with SnS_(2)/SnS prepared by two-step solvothermal method,the degradation efficiency of BPA and H2 evolution activity are increased by 3 and 2 times,respectively.It provides a theoretical guidance for developing various multiphase structural piezocatalyst with strong interface interactions to improve the piezocatalytic efficiency. 展开更多
关键词 Piezocatalysis SELF-TRANSFORMATION Phase junction Interfacial field Polarized field
下载PDF
双癸基甲基羟乙基氯化铵对金属表面铺展性能的影响
2
作者 宋艳新 田文柔 +5 位作者 陈媛媛 李俊艳 于佳欢 韩月盛 樊笑笑 智丽飞 《太原科技大学学报》 2020年第1期78-82,共5页
利用吊环法测定了双癸基甲基羟乙基氯化铵表面活性剂(DMHAC10)的cmc为0. 21 mg/m L,γcmc为27. 35 m N/m.采用座滴法研究了DMHAC10表面活性剂对铝箔、镁合金、铜箔、锌箔表面上的铺展性能。研究表明:DMHAC10表面活性剂在不同金属表面的... 利用吊环法测定了双癸基甲基羟乙基氯化铵表面活性剂(DMHAC10)的cmc为0. 21 mg/m L,γcmc为27. 35 m N/m.采用座滴法研究了DMHAC10表面活性剂对铝箔、镁合金、铜箔、锌箔表面上的铺展性能。研究表明:DMHAC10表面活性剂在不同金属表面的接触角随着DMHAC10浓度的增大先急速减小后保持恒定,并且与这几种金属都表现出了有优良的铺展性能。其中对铝箔表面的铺展效果最好,60 s时,5 mg/m L的DMHAC10与铝箔的铺展系数(S)值接近于0,并对吸附机理进行了探讨。 展开更多
关键词 表面活性剂 表面张力 接触角 铺展
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部