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薄片状PtZn@Silicalite-1分子筛的合成及催化丙烷脱氢性能研究
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作者 王靖宇 刘佳 +1 位作者 徐继香 王磊 《化工学报》 EI CSCD 北大核心 2024年第9期3188-3197,共10页
采用水热晶化法,以四甲基胍(TMG)为形貌调控剂,一步合成封装PtZn纳米合金的薄片状Silicalite-1分子筛(PtZn@Silicalite-1)。采用X射线衍射(XRD)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)等技术对样品进行表征分析,并考察了其丙烷脱... 采用水热晶化法,以四甲基胍(TMG)为形貌调控剂,一步合成封装PtZn纳米合金的薄片状Silicalite-1分子筛(PtZn@Silicalite-1)。采用X射线衍射(XRD)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)等技术对样品进行表征分析,并考察了其丙烷脱氢催化性能。结果显示,加入TMG可有效调控Silicalite-1分子筛晶体的生长取向,晶体沿b轴的尺寸与TMG/SiO_(2)的比值呈反比。在550℃和纯丙烷气氛下,片状PtZn@Silicalite-1催化剂表现出优异的丙烷脱氢性能,经过20 h的连续反应,其失活常数仅为0.007 h^(-1),而常规PtZn@Silicalite-1催化剂为0.013 h^(-1)。结合表征结果,薄片状分子筛催化剂具有更大的外比表面积和更短的b轴直通道,这提高了脱氢活性位的可接近性,缩短了气体分子在孔道中的扩散路径,从而提升了催化剂的活性和稳定性。 展开更多
关键词 薄片形貌 Silicalite-1分子筛 ptzn合金 封装 丙烷脱氢
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脱金属-还原策略诱导创制高分散PtZn合金催化剂用于丙烷脱氢反应 被引量:2
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作者 张龙康 马跃 +6 位作者 刘昌呈 万志鹏 翟承伟 王新 徐浩 关业军 吴鹏 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2023年第12期241-252,共12页
丙烷脱氢(PDH)是一种高效的丙烯生产工艺.近年来随着页岩气产量的增加,PDH逐渐成为替代石油催化裂化增产丙烯的重要方法之一.Pt基双金属催化剂在催化PDH领域被广泛研究.其中,PtZn合金双金属催化剂因较好的催化活性和较强的经济可行性,... 丙烷脱氢(PDH)是一种高效的丙烯生产工艺.近年来随着页岩气产量的增加,PDH逐渐成为替代石油催化裂化增产丙烯的重要方法之一.Pt基双金属催化剂在催化PDH领域被广泛研究.其中,PtZn合金双金属催化剂因较好的催化活性和较强的经济可行性,被认为是PDH反应的理想催化剂之一.PtZn合金主要有Pt_(1)Zn_(1),PtZn1.7和Pt3Zn等,其中Pt_(1)Zn_(1)催化PDH反应的活性最好.采用传统共浸渍法制备的PtZn双金属催化剂的金属物种容易分布不均匀,并且成分组成复杂,可能会有多种PtZn合金以及金属单质生成,因此催化活性不理想.如何制备高分散的Pt_(1)Zn_(1)合金催化剂对于PDH工艺的发展有着重要的意义.本文报道了一种分子筛脱金属-还原诱导的策略,将高分散的PtZn合金纳米颗粒负载到Beta沸石上用于PDH反应.首先,在乙二胺的辅助下通过一步水热法合成了杂原子分子筛Zn@Beta.X射线衍射、高分辨透射电镜和紫外-可见光(UV-vis)光谱等结果证明Zn@Beta被成功合成,并且Zn主要以单分散的骨架Zn物种存在.随后,通过简单的浸渍法负载金属Pt.UV-vis光谱、X射线光电子能谱(XPS)、傅里叶变换红外光谱和氢气程序升温还原等结果表明,在浸渍的过程中骨架Zn物种从分子筛骨架移出,并与游离的Pt物种产生了强相互作用.再经H2还原最终得到催化剂0.3Pt1Zn@Beta (Pt和Zn的负载量分别为0.3 wt%和1 wt%).XPS、同步辐射吸收谱和球差矫正电镜结果表明,0.3Pt1Zn@Beta形成了以Pt_(1)Zn_(1)合金物种为主的金属纳米颗粒,而通过共浸渍法制备的PtZn双金属催化剂0.3Pt1Zn/Beta中除了Pt_(1)Zn_(1)合金以外,还有大量的金属Pt单质生成.PDH催化性能评价结果表明,与0.3Pt1Zn/Beta和单金属催化剂0.3Pt/Beta相比,0.3Pt1Zn@Beta表现出更好的PDH催化活性和稳定性.550°C反应时,0.3Pt1Zn@Beta催化生成丙烯的速率为128 mmol/gcat./h,而0.3Pt1Zn/Beta和0.3Pt/Beta催化生成丙烯的仅为75和21 mmol/gcat./h.在550°C,1 bar,C3H8:N2 (V:V)=1:4,丙烷空速4.7 h^(-1)的反应条件下,丙烷初始转化率和丙烯初始选择性分别为36.8%和99.3%,24 h连续反应失活率低至0.004 h^(-1).并且在共氢气条件下实现了180 h的平稳运行.0.3Pt1Zn@Beta也表现出了良好的再生性能,经7次循环后仍能保持较好的催化活性,并且再生过程仅需简单的氢气吹扫,避免了空气焙烧导致的金属颗粒的团聚和温室气体的排放.综上所述,本文发展了一种分子筛脱金属-还原诱导策略,可合成高分散的Pt_(1)Zn_(1)合金催化剂并高效催化PDH反应.该方法的关键是Pt浸渍过程中骨架Zn物种迁移出分子筛骨架并与Pt产生强相互作用,有效克服了共浸渍法制备的双金属催化剂分布不均匀、成分不单一的缺点,为沸石负载双金属催化剂的合成提供新思路. 展开更多
关键词 脱金属-还原诱导策略 ptzn合金 Beta分子筛 丙烷脱氢
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β分子筛的Si/Al比对PtZn催化丙烷非临氢脱氢性能的影响
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作者 李博楠 邢亚楠 +1 位作者 康磊磊 刘晓艳 《燃料化学学报(中英文)》 EI CAS CSCD 北大核心 2023年第10期1432-1440,共9页
采用共浸渍法制备PtZn/β-x(x为SiO_(2)/Al_(2)O_(3)物质的量比)分子筛双金属催化剂,探究了β分子筛中硅铝比对丙烷非临氢脱氢反应性能的影响。采用XRD、BET、HAADF-STEM、NH3-TPD、C3H6-TPD等一系列表征技术对催化剂的物相结构、表面... 采用共浸渍法制备PtZn/β-x(x为SiO_(2)/Al_(2)O_(3)物质的量比)分子筛双金属催化剂,探究了β分子筛中硅铝比对丙烷非临氢脱氢反应性能的影响。采用XRD、BET、HAADF-STEM、NH3-TPD、C3H6-TPD等一系列表征技术对催化剂的物相结构、表面性质及其对丙烷非临氢脱氢反应性能的影响进行了研究。结果表明,催化稳定性随载体中Si/Al比的增大而提高(稳定性顺序:PtZn/DeAl-β>PtZn/β-40>PtZn/β-30>PtZn/β-25),而催化剂的强酸位点数量(PtZn/β-30>PtZn/β-40>PtZn/β-25>PtZn/DeAl-β),在一定程度上受硅铝比的影响,与丙烯选择性顺序相反。因此,分子筛的Si/Al比对催化剂的性质有重要的调变作用,当催化剂强酸位点较少、丙烯吸附较弱、比表面积较大时,有助于提高丙烷转化率、丙烯选择性和催化稳定性。 展开更多
关键词 硅铝比 ptzn双金属催化剂 Β分子筛 丙烷非临氢脱氢
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PtZn nanoparticles supported on porous nitrogen-doped carbon nanofibers as highly stable electrocatalysts for oxygen reduction reaction
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作者 Lei Zhao Jinxia Jiang +6 位作者 Shuhao Xiao Zhao Li Junjie Wang Xinxin Wei Qingquan Kong Jun Song Chen Rui Wu 《Nano Materials Science》 EI CAS CSCD 2023年第3期329-334,共6页
The oxygen reduction reaction(ORR)electrocatalytic activity of Pt-based catalysts can be significantly improved by supporting Pt and its alloy nanoparticles(NPs)on a porous carbon support with large surface area.Howev... The oxygen reduction reaction(ORR)electrocatalytic activity of Pt-based catalysts can be significantly improved by supporting Pt and its alloy nanoparticles(NPs)on a porous carbon support with large surface area.However,such catalysts are often obtained by constructing porous carbon support followed by depositing Pt and its alloy NPs inside the pores,in which the migration and agglomeration of Pt NPs are inevitable under harsh operating conditions owing to the relatively weak interaction between NPs and carbon support.Here we develop a facile electrospinning strategy to in-situ prepare small-sized PtZn NPs supported on porous nitrogen-doped carbon nanofibers.Electrochemical results demonstrate that the as-prepared PtZn alloy catalyst exhibits excellent initial ORR activity with a half-wave potential(E_(1/2))of 0.911 V versus reversible hydrogen electrode(vs.RHE)and enhanced durability with only decreasing 11 mV after 30,000 potential cycles,compared to a more significant drop of 24 mV in E_(1/2)of Pt/C catalysts(after 10,000 potential cycling).Such a desirable performance is ascribed to the created triple-phase reaction boundary assisted by the evaporation of Zn and strengthened interaction between nanoparticles and the carbon support,inhibiting the migration and aggregation of NPs during the ORR. 展开更多
关键词 ptzn alloy Porous nitrogen-doped carbon nanofibers ELECTROSPINNING Oxygen reduction reaction
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PtZn-Sn/SBA-15合成、表征及对丙烷催化脱氢性能 被引量:14
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作者 余长林 徐恒泳 +2 位作者 陈喜蓉 葛庆杰 李文钊 《燃料化学学报》 EI CAS CSCD 北大核心 2010年第3期308-312,共5页
以SBA-15为载体,利用浸渍法制备了单、双和三金属Pt催化剂,并对催化剂进行了N2物理吸附(BET)、程序升温还原(H2-TPR)、H2-化学吸附、透射电子显微镜(TEM)和O2-脉冲等技术表征,研究了它们对丙烷催化脱氢(CDH)制丙烯反应的催化性能。研究... 以SBA-15为载体,利用浸渍法制备了单、双和三金属Pt催化剂,并对催化剂进行了N2物理吸附(BET)、程序升温还原(H2-TPR)、H2-化学吸附、透射电子显微镜(TEM)和O2-脉冲等技术表征,研究了它们对丙烷催化脱氢(CDH)制丙烯反应的催化性能。研究结果表明,Pt在三金属催化剂中的分散性能最好,并且部分负载组分可以进入SBA-15的孔道,Pt的分散度达到29%,Pt粒子尺寸为3 nm左右。三金属催化剂表现出优越的脱氢性能,这主要归结于载体的弱酸性、活性组分和助剂、载体之间的相互作用及Zn对Pt的电子调控作用。这些因素使催化剂的积炭量较低,因而具有较高的脱氢稳定性和极高的选择性。 展开更多
关键词 SBA-15载体 ptzn-Sn 丙烷 脱氢
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钙助剂对PtZn/SBA-15丙烷脱氢催化剂性能的影响 被引量:2
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作者 冯静 张明森 +1 位作者 刘红梅 徐向亚 《石油化工》 CAS CSCD 北大核心 2017年第7期845-849,共5页
考察了碱土金属钙助剂对Pt Zn/SBA-15催化剂丙烷脱氢性能的影响,通过XRD,BET,TG,NH3-TPD,TEM等表征手段对影响原因进行了分析。表征结果显示,锌和钙助剂的添加能够使Pt Zn Ca/SBA-15催化剂中的铂粒子分散均匀,粒径减小,部分进入分子筛... 考察了碱土金属钙助剂对Pt Zn/SBA-15催化剂丙烷脱氢性能的影响,通过XRD,BET,TG,NH3-TPD,TEM等表征手段对影响原因进行了分析。表征结果显示,锌和钙助剂的添加能够使Pt Zn Ca/SBA-15催化剂中的铂粒子分散均匀,粒径减小,部分进入分子筛孔道内部;反应中产生的积碳主要沉积在载体表面,未覆盖催化剂活性中心。实验结果表明,Pt Zn Ca/SBA-15催化剂具有良好的丙烷脱氢性能,在反应温度为600℃的条件下,稳定反应70 h以上,丙烷转化率为40%左右,丙烯选择性约为96%。 展开更多
关键词 丙烷脱氢 SBA-15 ptzn 丙烯
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Synergistic effect of size-dependent PtZn nanoparticles and zinc single-atom sites for electrochemical ozone production in neutral media 被引量:1
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作者 Bowen Yuan Zihao Yao +7 位作者 Chenlong Qiu Haiyang Zheng Yilong Yan Qiaoqiao Zhang Xiang Sun Yu Gu Xing Zhong Jianguo Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期312-322,共11页
Electrochemical ozone production(EOP) via water electrolysis represents an attractive method for the generation of high-purity O3. Herein, the X-PtZn/Zn-N-C electrocatalysts show a strong structural sensitive behavior... Electrochemical ozone production(EOP) via water electrolysis represents an attractive method for the generation of high-purity O3. Herein, the X-PtZn/Zn-N-C electrocatalysts show a strong structural sensitive behavior depends on the size of the PtZn nanoparticles and their EOP activity exhibits a volcano-type dependence for the O3 performance in neutral media. The 7.7-PtZn/Zn-N-C exhibits EOP current efficiency of 4.2%, and shows the prominent performance in the production of gaseous O3 with a value of 1647 ppb at 30 min, which is almost 4-fold compared to 2.2-Pt Zn/Zn-N-C. Based on the experiments and theoretical calculations, the performance of the EOP process was determined by the nanoparticle size-effect and the synergistic effect between the PtZn nanoparticles and atomically dispersed Zn-N-C. Furthermore, the fivemembered cyclic structure of O3 can be stabilized between the PtZn nanoparticle and the Zn-N-C support,indicating that O3 is produced at the interface. 展开更多
关键词 Electrochemical ozone production ptzn Single-atom catalysts Size effect Synergistic effect
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自水解驱动PtZn/纳米AlN催化剂的合成及其丙烷脱氢性能研究 被引量:4
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作者 张金赫 张昌武 +2 位作者 王新鸽 程家威 石磊 《分子催化》 CAS CSCD 北大核心 2021年第5期395-403,I0001,共10页
采用纳米晶氮化铝(n-AlN)做载体,等体积浸渍法制备了系列PtM/n-AlN催化剂,其中M为Zn、Sn、In、Ga中的一种.丙烷脱氢性能测试显示Zn是最优助剂,同步提升了Pt/n-AlN催化剂的活性、选择性和稳定性.X射线粉末衍射(XRD)、扫描电镜(SEM)和N_(2... 采用纳米晶氮化铝(n-AlN)做载体,等体积浸渍法制备了系列PtM/n-AlN催化剂,其中M为Zn、Sn、In、Ga中的一种.丙烷脱氢性能测试显示Zn是最优助剂,同步提升了Pt/n-AlN催化剂的活性、选择性和稳定性.X射线粉末衍射(XRD)、扫描电镜(SEM)和N_(2)物理吸附等手段证实水溶液浸渍会导致n-AlN表面水解,刻蚀出大量介孔空间,Zn助剂加剧了n-AlN表面水解,显著促进Pt的分散.球差校正扫描透射电镜(AC-STEM)结合X射线光电子谱(XPS)披露1~2 nm的低维Pt-Zn纳米簇是PtZn/n-AlN催化剂活性相. 展开更多
关键词 丙烷 催化脱氢 氮化铝 自水解 Pt-Zn簇
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Enhanced stability of Pt/Al_(2)O_(3) modified by Zn promoter for catalytic dehydrogenation of ethane 被引量:2
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作者 Xiaoyu Li Yanliang Zhou +6 位作者 Botao Qiao Xiaoli Pan Chaojie Wang Liru Cao Lin Li Jian Lin Xiaodong Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期14-20,共7页
Catalytic ethane dehydrogenation(EDH) to ethylene over Pt-based catalysts has received increasing interests in recent years as it is a potential alternative route to conventional steam cracking. However, the catalysts... Catalytic ethane dehydrogenation(EDH) to ethylene over Pt-based catalysts has received increasing interests in recent years as it is a potential alternative route to conventional steam cracking. However, the catalysts used in this reaction often suffer from rapid deactivation due to serious coke deposition and metal sintering. Herein, we reported the effects of Zn modification on the stability of Pt/Al2 O3 for EDH.The Zn-modified sample(PtZn2/Al2 O3) exhibits stable ethane conversion(20%) with over 95% ethylene selectivity. More importantly, it exhibits a significantly low deactivation rate of only 0.003 h-1 at 600 °C for70 h, which surpasses most of previously reported catalysts. Detailed characterizations including in situ FT-IR, ethylene adsorption microcalorimetry, and HAADF-STEM etc. reveal that Zn modifier reduces the number of Lewis acid sites on the catalyst surface. Moreover, it could modify Pt sites and preferentially cover the step sites, which decrease surface energy and retard the sintering of Pt particle, then prohibiting the further dehydrogenation of ethylene to ethylidyne. Consequently, the good stability is realized due to anti-sintering and the decrease of coke formation on the Pt Zn2/Al2 O3 catalyst. 展开更多
关键词 Catalytic dehydrogenation of ethane STABILITY ptzn/Al2O3 Zn promoter COKE
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Bifunctional interstitial phosphorous doping strategy boosts platinum-zinc alloy for efficient ammonia oxidation reaction and hydrogen evolution reaction 被引量:2
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作者 Tianqi Yu Kexin Tan +2 位作者 Jia Wu Yongjin Zou Shibin Yin 《Nano Research》 SCIE EI CSCD 2024年第3期1182-1189,共8页
It is still a lack of bifunctional catalysts for ammonia oxidation reaction(AOR)and hydrogen evolution reaction(HER)due to their different reaction mechanisms.In this work,P is doped into PtZn alloy by calcination wit... It is still a lack of bifunctional catalysts for ammonia oxidation reaction(AOR)and hydrogen evolution reaction(HER)due to their different reaction mechanisms.In this work,P is doped into PtZn alloy by calcination with NaH_(2)PO_(2) as P source to induce the lattice tensile strain of Pt and the electronic interaction between P and Zn,which optimizes the AOR and HER activity simultaneously.The sample with the optimal P content can drive the AOR peak current density of 293.6 mA·mgPt^(-1),which is almost 2.7 times of Pt.For HER,the overpotential at^(-1)0 mA·cm^(-2) is only 23 mV with Tafel slope of 34.1 mV·dec^(-1).Furthermore,only 0.59 V is needed to obtain 50 mA·mgPt^(-1) for ammonia electrolysis under a two-electrode system.Therefore,this work shows an ingenious method to design bifunctional catalysts for ammonia electrolysis. 展开更多
关键词 ptzn alloy phosphorous doping ammonia oxidation reaction hydrogen evolution reaction bifunctional catalyst
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