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Intercalation assisted liquid phase production of disulfide zirconium nanosheets for efficient electrocatalytic dinitrogen reduction to ammonia
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作者 Yangshuo Li Huiyong Wang +5 位作者 Bing Chang Yingying Guo Zhiyong Li shamraiz hussain talib Zhansheng Lu Jianji Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第4期1174-1184,共11页
Disulfide zirconium(ZrS_(2)) is a two-dimensional(2D) transition metal disulfide and has given rise to extensive attention because of its distinctive electronic structure and properties.However,mass production of high... Disulfide zirconium(ZrS_(2)) is a two-dimensional(2D) transition metal disulfide and has given rise to extensive attention because of its distinctive electronic structure and properties.However,mass production of high quality of ZrS_(2)nanosheets to realize their practical application remains a challenge.Here,we have successfully exfoliated the bulk ZrS_(2)powder with the thickness of micron into single and few-layer nanosheets through liquid-phase exfoliation in N-methylpyrrolidone(NMP) assisted via aliphatic amines as intercalators.It is found that the exfoliation yield is as high as 27.3%,which is the record value for the exfoliation of ZrS_(2)nanosheets from bulk ZrS_(2)powder,and 77.1% of ZrS_(2)nanosheets are 2-3 layers.The molecular geometric size and aliphatic amine basicity have important impact on the exfoliation.Furthermore,the ZrS_(2)nanosheets have been used as catalyst in the electrocatalytic dinitrogen reduction with the NH3yield of 57.75 μg h^(-1)mg_(cat.)^(-1),which is twice that by ZrS_(2)nanofibers reported in literature and three times that by the bulk ZrS_(2)powder.Therefore,the liquid phase exfoliation strategy reported here has great potential in mass production of ZrS_(2)nanosheets for high activity electrocatalysis. 展开更多
关键词 Disulfide zirconium Liquid-phase exfoliation Aliphatic amines Electrocatalytic dinitrogen reduction AMMONIA
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CO oxidation on MXene(Mo_(2)CS_(2)) supported single-atom catalyst: A termolecular Eley-Rideal mechanism
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作者 shamraiz hussain talib Zhansheng Lu +7 位作者 Beenish Bashir Sajjad hussain Khalil Ahmad Salahuddin Khan Sajjad Haider Zongxian Yang Kersti Hermansson Jun Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第2期519-528,共10页
Finding transition metal catalysts for effective catalytic conversion of CO to CO_(2)has attracted much attention.MXene as a new 2D layered material of early transition metal carbides,nitrides,and carbo-nitrides is a ... Finding transition metal catalysts for effective catalytic conversion of CO to CO_(2)has attracted much attention.MXene as a new 2D layered material of early transition metal carbides,nitrides,and carbo-nitrides is a robust support for achoring metal atoms.In this study,the electronic structure,geometries,thermodynamic stability,and catalytic activity of MXene (Mo_(2)CS_(2)) supported single noble metal atoms (NM=Ru,Rh,Pd,Ir,Pt and Au) have been systematically examined using first-principles calculations and ab initio molecular dynamic (AIMD) simulations.First,AIMD simulations and phonon spectra demonstrate the dynamic and thermal stabilities of Mo_(2)CS_(2)monolayer.Three likely reaction pathways,LangmuirHinshelwood (LH),Eley-Rideal (ER),and Termolecular Eley–Rideal (TER) for CO oxidation on the Ru1-and Ir_(1)@Mo_(2)CS_(2)SACs,have been studied in detail.It is found that CO oxidation mainly proceeds via the TER mechanism under mild reaction conditions.The corresponding rate-determining steps are the dissociation of the intermediate (OCO-Ru_(1)-OCO) and formation of OCO-Ir_(1)-OCO intermediate.The downshift d-band center of Ru1-and Ir_(1)@Mo_(2)CS_(2)help to enhance activity and improve catalytst stability.Moreover,a microkinetic study predicts a maximum CO oxidation rate of 4.01×10^(2)s^(-1)and 4.15×10^(3)s^(-1)(298.15K) following the TER pathway for the Ru_(1)-and Ir_(1)@Mo_(2)CS_(2)catalysts,respectively.This work provides guideline for fabricating and designing highly efficient SACs with superb catalyts using MXene materials. 展开更多
关键词 CO oxidation Quantum chemical study 2D MXene monolayer M1@Mo_(2)CS_(2) Termolecular Eley–Rideal Single-atom catalysis
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磷钨酸负载的非贵金属单原子催化剂:乙烯环氧化的理论研究 被引量:5
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作者 shamraiz hussain talib 于小虎 +2 位作者 于琦 Sambath Baskaran 李隽 《Science China Materials》 SCIE EI CSCD 2020年第6期1003-1014,共12页
基于第一性原理,本文系统研究了过渡金属单原子(铁,钴,镍,钌,铑,钯,锇,铱,铂)负载在磷钨酸(PTA)催化剂上的几何和电子结构,并进一步研究了乙烯环氧化在铁单原子催化剂上的可能反应机理.我们发现PTA最可能结合过渡金属单原子的位置是四... 基于第一性原理,本文系统研究了过渡金属单原子(铁,钴,镍,钌,铑,钯,锇,铱,铂)负载在磷钨酸(PTA)催化剂上的几何和电子结构,并进一步研究了乙烯环氧化在铁单原子催化剂上的可能反应机理.我们发现PTA最可能结合过渡金属单原子的位置是四配位中空位.乙烯环氧化催化活性的理论计算表明,非贵金属Fe1-PTA具有可观的吸附能,这是引发此催化循环的关键物理量.我们进一步进行了铁单原子和PTA结合的成键分析,发现电荷从铁单原子转移到PTA团簇,并且强烈的Fe–O共价金属-载体相互作用(CMSI)是其高稳定性的基础.在催化剂Fe1-PTA上可能的乙烯环氧化催化机理共包括三步:1)氧气分子通过电荷转移吸附在Fe1-PTA上;2)第一个乙烯分子攻击吸附在Fe1-PTA上的氧气分子,随后形成C2H4O;3)表面吸附的氧原子和第二个乙烯分子生成C2H4O,完成催化循环.本研究发现,Fe1-PTA对于乙烯环氧化主要通过Eley-Rideal机理进行.本工作为发展高效多相非贵金属单原子乙烯环氧化催化剂提供了理论依据. 展开更多
关键词 single-atom catalyst non-noble metal phosphotungstic acid ethylene epoxidation computational modeling
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非贵金属单原子催化剂Co_(1)/MXene(Mo_(2)CS_(2))的CO氧化反应机理研究 被引量:2
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作者 shamraiz hussain talib Sambath Baskaran +6 位作者 于小虎 于琦 Beenish Bashir Shabbir Mahammad Sajjad hussain 陈学年 李隽 《Science China Materials》 SCIE EI CSCD 2021年第3期651-663,共13页
MXene是一类由前过渡态金属碳化物、氮化物或碳氮化物构成的新型二维材料.我们利用量子化学方法研究了单原子Co在新型二维MXene材料Mo2CS2上的吸附构型、稳定性和催化性质.研究发现Co原子可以稳定锚定在MXene材料的表面,形成的单原子催... MXene是一类由前过渡态金属碳化物、氮化物或碳氮化物构成的新型二维材料.我们利用量子化学方法研究了单原子Co在新型二维MXene材料Mo2CS2上的吸附构型、稳定性和催化性质.研究发现Co原子可以稳定锚定在MXene材料的表面,形成的单原子催化剂适合于催化低温CO氧化.计算表明,吸附的CO和O2分子与Co_(1)/Mo_(2)CS_(2)催化剂表面之间的电荷转移在活化这些小分子时起着重要作用.我们研究了Co1/Mo2CS2催化氧化CO的三种机理:Eley-Rideal(ER),Langmuir-Hinshelwood(LH)和Termolecular Eley-Rideal(TER),发现在低温下这三种反应机理都是可行的.其中在Co_(1)/Mo_(2)CS_(2)催化剂上TER机理具有最高的催化活性,计算的决速步能垒分别为0.67(TER),0.78(LH)和0.88 eV(ER).我们的研究结果表明,利用二维材料MXene发展和设计经济的、非贵金属单原子催化剂具有重要应用前景. 展开更多
关键词 单原子催化剂 量子化学方法 催化性质 电荷转移 过渡态 金属碳化物 非贵金属 二维材料
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