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Strongly Coupled Ag/Sn-SnO_(2)Nanosheets Toward CO_(2)Electroreduction to Pure HCOOH Solutions at Ampere‑Level Current
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作者 Min Zhang Aihui Cao +5 位作者 Yucui Xiang Chaogang Ban Guang Han Junjie Ding Li‑Yong Gan Xiaoyuan Zhou 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期212-226,共15页
Electrocatalytic reduction of CO_(2) converts intermittent renewable electricity into value-added liquid products with an enticing prospect,but its practical application is hampered due to the lack of high-performance... Electrocatalytic reduction of CO_(2) converts intermittent renewable electricity into value-added liquid products with an enticing prospect,but its practical application is hampered due to the lack of high-performance electrocatalysts.Herein,we elaborately design and develop strongly coupled nanosheets composed of Ag nanoparticles and Sn-SnO_(2) grains,designated as Ag/Sn-SnO_(2) nanosheets(NSs),which possess optimized electronic structure,high electrical conductivity,and more accessible sites.As a result,such a catalyst exhibits unprecedented catalytic performance toward CO_(2)-to-formate conversion with near-unity faradaic efficiency(≥90%),ultrahigh partial current density(2,000 mA cm^(−2)),and superior long-term stability(200 mA cm^(−2),200 h),surpassing the reported catalysts of CO_(2) electroreduction to formate.Additionally,in situ attenuated total reflection-infrared spectra combined with theoretical calculations revealed that electron-enriched Sn sites on Ag/Sn-SnO_(2)NSs not only promote the formation of*OCHO and alleviate the energy barriers of*OCHO to*HCOOH,but also impede the desorption of H*.Notably,the Ag/Sn-SnO_(2)NSs as the cathode in a membrane electrode assembly with porous solid electrolyte layer reactor can continuously produce~0.12 M pure HCOOH solution at 100 mA cm^(−2)over 200 h.This work may inspire further development of advanced electrocatalysts and innovative device systems for promoting practical application of producing liquid fuels from CO_(2). 展开更多
关键词 Electrochemical CO_(2)reduction Coupled Ag/Sn-SnO_(2)nanosheets Electronic structure Porous solid electrolyte PURE
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Boosting the catalytic activity toward oxygen reduction via a heterostructure of porous iron oxide-decorated 2D NiO/NG nanosheets
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作者 Kakali Maiti Matthew T.Curnan +2 位作者 Hyung Jun Kim Kyeounghak Kim Jeong Woo Han 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期669-681,I0016,共14页
As a noble metal substitute,two-dimensional(2D)hierarchical nano-frame structures have attracted great interest as candidate catalysts due to their remarkable advantages-high intrinsic activity,high electron mobility,... As a noble metal substitute,two-dimensional(2D)hierarchical nano-frame structures have attracted great interest as candidate catalysts due to their remarkable advantages-high intrinsic activity,high electron mobility,and straightforward surface functionalization.Therefore,they may replace Pt-based catalysts in oxygen reduction reaction(ORR)applications.Herein,a simple method is developed to design hierarchical nano-frame structures assembled via 2D NiO and N-doped graphene(NG)nanosheets.This procedure can yield nanostructures that satisfy the criteria correlated with improved electrocatalytic performance,such as large surface area,numerous undercoordinated atoms,and high defect densities.Further,porous NG nanosheet architectures,featuring NiO nanosheets densely coordinated with accessible holey Fe_(2)O_(3) moieties,can enhance mesoporosity and balance hydrophilicity.Such improvements can facilitate charge transport and expose formerly inaccessible reaction sites,maximizing active site density utilization.Density functional theory(DFT)calculations reveal favored O_(2) adsorption and dissociation on Fe_(2)O_(3) hybrid structures when supported by 2D NiO and NG nanomaterials,given 2D materials donated charge to Fe_(2)O_(3) active sites.Our systematic studies reveal that synergistic contributions are responsible for enriching the catalytic activity of Fe_(2)O_(3)@NiO/NG in alkaline media-encompassing internal voids and pores,unique hierarchical support structures,and concentrated N-dopant and bimetallic atomic interactions.Ultimately,this work expands the toolbox for designing and synthesizing highly efficient 2D/2D shelled functional nanomaterials with transition metals,endeavoring to benefit energy conversion and related ORR applications. 展开更多
关键词 N-doped graphene Holey Fe_(2)O_(3)nanocrystals NiO nanosheets High catalytic performance ORR
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Engineering of oxygen vacancy and bismuth cluster assisted ultrathin Bi_(12)O_(17)Cl_(2)nanosheets with efficient and selective photoreduction of CO_(2)to CO
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作者 Meili Guan Ni Lu +7 位作者 Xuan Zhang Qiuwan Wang Jian Bao Guiye Chen Hao Yu Huaming Li Jiexiang Xia Xuezhong Gong 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期1-11,共11页
The photocatalytic conversion of CO_(2)into solar‐powered fuels is viewed as a forward‐looking strategy to address energy scarcity and global warming.This work demonstrated the selective photoreduction of CO_(2)to C... The photocatalytic conversion of CO_(2)into solar‐powered fuels is viewed as a forward‐looking strategy to address energy scarcity and global warming.This work demonstrated the selective photoreduction of CO_(2)to CO using ultrathin Bi_(12)O_(17)Cl_(2)nanosheets decorated with hydrothermally synthesized bismuth clusters and oxygen vacancies(OVs).The characterizations revealed that the coexistences of OVs and Bi clusters generated in situ contributed to the high efficiency of CO_(2)–CO conversion(64.3μmol g^(−1)h^(−1))and perfect selectivity.The OVs on the facet(001)of the ultrathin Bi_(12)O_(17)Cl_(2)nanosheets serve as sites for CO_(2)adsorption and activation sites,capturing photoexcited electrons and prolonging light absorption due to defect states.In addition,the Bi‐cluster generated in situ offers the ability to trap holes and the surface plasmonic resonance effect.This study offers great potential for the construction of semiconductor hybrids as multiphotocatalysts,capable of being used for the elimination and conversion of CO_(2)in terms of energy and environment. 展开更多
关键词 Bi cluster Bi_(12)O_(17)Cl_(2)nanosheet oxygen vacancy photocatalytic CO_(2)reduction
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Ti_(3)C_(2)T_(x)超薄纳米片高效率去除废水中重金属的研究
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作者 于雪荣 姜健 +3 位作者 王秀莉 陈元元 刘惠 陈宁宁 《化学试剂》 CAS 2024年第1期69-75,共7页
通过刻蚀剥离法制备了Ti_(3)C_(2)T_(x)超薄纳米片,探究了其对废水中重金属离子的吸附特性。通过SEM、XRD、AFM、FT-IR、Raman对Ti_(3)C_(2)T_(x)超薄纳米片的形貌和结构进行了表征,通过ICP-MS对处理前后水体中重金属离子的含量进行了... 通过刻蚀剥离法制备了Ti_(3)C_(2)T_(x)超薄纳米片,探究了其对废水中重金属离子的吸附特性。通过SEM、XRD、AFM、FT-IR、Raman对Ti_(3)C_(2)T_(x)超薄纳米片的形貌和结构进行了表征,通过ICP-MS对处理前后水体中重金属离子的含量进行了测试。结果表明剥离的Ti_(3)C_(2)T_(x)超薄纳米片表面含有结构缺陷和羟基,当水体中Cu(Ⅱ)、Pb(Ⅱ)、Cr(Ⅵ)初始浓度为50 mg/L时,47.5 mg Ti_(3)C_(2)T_(x)超薄纳米片对其的去除效率高达90%以上,尤其是对Pb(Ⅱ)的去除效率达到了98.81%,吸附性能远高于大孔树脂、硅藻土和活性炭等常见吸附试剂。在Na(Ⅰ)、Cu(Ⅱ)、Pb(Ⅱ)、Cr(Ⅵ)4种离子共存溶液中,Ti_(3)C_(2)T_(x)超薄纳米片对于Pb(Ⅱ)和Cr(Ⅵ)的去除依然可以达到92%以上。通过动力学和吸附等温拟合,Ti_(3)C_(2)T_(x)纳米片对Pb(Ⅱ)的吸附符合拟二级动力学模型和Langmuir等温模型,对Pb(Ⅱ)的最大吸附量和最低检出限分别为81.7 mg/g和0.0094 mg/L。Ti_(3)C_(2)T_(x)超薄纳米片对重金属离子的吸附特性在化学工业、食品加工的废水处理中具有良好的应用前景。 展开更多
关键词 Ti_(3)C_(2)T_(x) 超薄纳米片 重金属离子 刻蚀剥离 吸附
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Achieving highly selective electrochemical CO_(2) reduction to C_(2)H_(4) on Cu nanosheets 被引量:1
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作者 Huan Xie Ruikuan Xie +6 位作者 Zhiyuan Zhang Yongyu Pang Yuting Luo Jiong Li Bilu Liu Maria-Magdalena Titirici Guoliang Chai 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期312-320,共9页
The conversion of CO_(2)into value-added chemicals coupled with the storage of intermittent renewable electricity is attractive.CuO nanosheets with an average size and thickness of~30 and~20 nm have been developed,whi... The conversion of CO_(2)into value-added chemicals coupled with the storage of intermittent renewable electricity is attractive.CuO nanosheets with an average size and thickness of~30 and~20 nm have been developed,which are in situ reduced into Cu nanosheets during electrochemical CO_(2)reduction reaction(ECO_(2)RR).The derived Cu nanosheets demonstrate much higher selectivity for C2H4production than commercial CuO derived Cu powder,with an optimum Faradaic efficiency of 56.2%and a partial current density of C_(2)H_(4)as large as 171.0 mA cm^(-2)in a gas diffusion flow cell.The operando attenuated total reflectance-Fourier transform infrared spectra measurements and density functional theory simulations illustrate that the high activity and selectivity of Cu nanosheets originate from the edge sites on Cu nanosheets with a coordinate number around 5(4–6),which facilitates the formation of^(*)CHO rather than^(*)COH intermediate,meanwhile boosting the C-C coupling reaction of^(*)CO and^(*)CHO intermediates,which are the critical steps for C_(2)H_(4)formation. 展开更多
关键词 Electrochemical CO_(2)reduction Cu nanosheets C_(2)H_(4) High selectivity Coordination number
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Unraveling the Role of Nitrogen-Doped Carbon Nanowires Incorporated with MnO_(2)Nanosheets as High Performance Cathode for Zinc-Ion Batteries 被引量:1
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作者 Xiaohui Li Qiancheng Zhou +5 位作者 Ze Yang Xing Zhou Dan Qiu Huajun Qiu Xintang Huang Ying Yu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第3期205-213,共9页
Manganese-based cathode materials are considered as a promising candidate for rechargeable aqueous zinc-ion batteries(ZIBs).Suffering from poor conductive and limited structure tolerance,various carbon matrix,especial... Manganese-based cathode materials are considered as a promising candidate for rechargeable aqueous zinc-ion batteries(ZIBs).Suffering from poor conductive and limited structure tolerance,various carbon matrix,especially N-doped carbon,were employed to incorporate with MnO_(2)for greatly promoted electrochemical performances.However,the related underlying mechanism is still unknown,which is unfavorable to guide the design of high performance electrode.Herein,by incorporating layered MnO_(2)with N-doped carbon nanowires,a free-standing cathode with hierarchical core-shell structure(denoted as MnO_(2)@NC)is prepared.Benefiting from the N-doped carbon and rational architecture,the MnO_(2)@NC electrode shows an enhanced specific capacity(325 mAh g^(−1)at 0.1 A g^(−1))and rate performance(90 mAh g^(−1)at 2 A g^(−1)),as well as improved cycling stability.Furthermore,the performance improvement mechanism of MnO_(2)incorporated by N-doped carbon is investigated by X-ray photoelectron spectroscopy(XPS),Raman spectrums and density functional theory(DFT)calculation.The N atom elongates the Mn-O bond and reduces the valence of Mn^(4+)ion in MnO_(2)crystal by delocalizing its electron clouds.Thus,the electrostatic repulsion will be weakened when Zn^(2+)/H^(+)insert into the host MnO_(2)lattices,which is profitable to more cation insertion and faster ion transfer kinetics for higher capacity and rate capability.This work elucidates a fundamental understanding of the functions of N-doped carbon in composite materials and shed light on a practical pathway to optimize other electrode materials. 展开更多
关键词 core-shell nanostructure MnO_(2)nanosheets N-doped carbon Zn ion batteries
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Thermal decomposition effect of MgCo_(2)O_(4)nanosheets on ammonium perchlorate-based energetic molecular perovskites 被引量:1
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作者 Er-hai An Xiao-xia Li +3 位作者 Hai-xia Zhao Ying-xin Tan Xiong Cao Peng Deng 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第2期111-119,共9页
Energetic molecular perovskites have attracted widespread attention in the fields of energy materials due to their high detonation performance.In this work,we reported the effect of MgCo_(2)O_(4) nanosheets on the the... Energetic molecular perovskites have attracted widespread attention in the fields of energy materials due to their high detonation performance.In this work,we reported the effect of MgCo_(2)O_(4) nanosheets on the thermal decomposition of ammonium perchlorate(NH_(4)ClO_(4),AP)-based energetic molecular perovskites(AP-based energetic molecular perovskites).The morphology and structure of the MgCo_(2)O_(4) nanosheets were characterized.And their catalytic effect on the thermal decomposition of AP-based energetic molecular perovskites(H_2pz)[NH_(4)(ClO_(4))_(3)](PAP-4),(H_2dabco)[NH_(4)(ClO_(4))_(3)](DAP-4),(H_2mpz)[NH_(4)(ClO_(4))_(3)](PAP-M_(4)),and (H_2hpz)[NH_(4)(ClO_(4))_(3)](PAP-H_(4)) was analyzed.The results showed that MgCo_(2)O_(4) nanosheets had excellent intrinsically catalytic performance towards enhancing the thermal decomposition of AP-based energetic molecular perovskites.After adding MgCo_(2)O_(4) nanosheets,the thermal decomposition peak temperatures of PAP-4,DAP-4,PAP-M_(4),and PAP-H_(4) had been reduced by35.7℃,48.4℃,37.9℃,and 43.6℃,respectively.And the activation energy(Ea)of the thermal decomposition of AP-based energetic molecular perovskites had been reduced,the Eaof PAP-H_(4) decreased by 46.4 kJ/mol at most among them.The catalytic mechanism of MgCo_(2)O_(4) nanosheets for AP-based energetic molecular perovskites is analyzed.This work provides a reference for the future application of AP-based energetic molecular perovskites. 展开更多
关键词 AP-based energetic molecular perovskites MgCo_(2)O_(4)nanosheets Thermal decomposition Catalytic performance
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探究超薄Bi_(2)MoO_(6)纳米片高效光催化CO_(2)还原活性
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作者 兰钰婕 梁卿 +2 位作者 黄晓卷 毕迎普 张亚军 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第2期121-129,I0002,共10页
铋系层状半导体材料凭借其独特的表面特性在光催化领域得到广泛的研究及应用,然而在光催化反应过程中光生电荷迁移及其表界面动态变化却鲜见报道.我们利用准原位X射线光电子能谱仪(QIS-XPS)系统研究超薄Bi_(2)MoO_(6)纳米片光催化CO_(2... 铋系层状半导体材料凭借其独特的表面特性在光催化领域得到广泛的研究及应用,然而在光催化反应过程中光生电荷迁移及其表界面动态变化却鲜见报道.我们利用准原位X射线光电子能谱仪(QIS-XPS)系统研究超薄Bi_(2)MoO_(6)纳米片光催化CO_(2)还原过程中光生电荷迁移及其表界面演变过程.研究结果表明:在暗态条件下CO_(2)分子吸附于(010)暴露面Bi活性位,由于CO_(2)分子强的拉电子能力,导致内层出现高价态Mo^((6+x)+).当光照射至样品表面上时,*CO_(2)特征峰强度显著降低,*CO特征峰强度明显升高,表明CO_(2)分子在Bi活性位发生活化断键,并与光生电子反应形成*CO,使得高价态Mo^((6+x)+)含量增大.活性测试表明超薄Bi2MoO6纳米片的CO产量活性为41.8μmol·g^(-1)·h^(-1),其比块体Bi_(2)MoO_(6)活性高4.2倍,并且展现出优异的光催化稳定性.该工作为二维层状材料高效光催化CO_(2)还原机理研究提供了一种全新的研究思路. 展开更多
关键词 光催化 超薄纳米片 Bi_(2)MoO_(6) CO_(2)还原 电荷迁移
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基于少层MoS_(2)纳米片的光学生物传感器用于癌症标志物ctDNA的检测
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作者 卫瑚玥 李杜娟 +6 位作者 崔治莲 樊凯 杨伟煌 刘红英 李丽丽 吴薇 王高峰 《中国生物医学工程学报》 CAS CSCD 北大核心 2024年第2期183-195,共13页
癌症已成为威胁人类健康和生命的主要疾病之一。循环肿瘤DNA(ctDNA)检测作为一种实用的液体活检技术,在肿瘤诊断、靶向治疗和预后预测中具有重要的应用前景。因此,本课题研究了一种基于少层MoS_(2)纳米片的光学生物传感器用于癌症标志物... 癌症已成为威胁人类健康和生命的主要疾病之一。循环肿瘤DNA(ctDNA)检测作为一种实用的液体活检技术,在肿瘤诊断、靶向治疗和预后预测中具有重要的应用前景。因此,本课题研究了一种基于少层MoS_(2)纳米片的光学生物传感器用于癌症标志物ctDNA的高灵敏检测。首先,采用剪切剥离法制备少层MoS_(2)纳米片,并对制备条件进行优化,以制备横向尺寸较大、厚度均匀的少层MoS_(2)纳米片;其次,通过分散液吸光度的变化研究少层MoS_(2)纳米片在高浓度盐溶液中的加速聚集沉淀行为;然后,基于MoS_(2)纳米片对单链DNA的吸附力,研究了单链DNA对于盐诱导沉淀少层MoS_(2)纳米片的抑制作用;最后,利用杂交形成的双链DNA从少层MoS_(2)纳米片上脱落而导致的分散液吸光度的变化构建光学生物传感器,并通过cpDNA与不同浓度的ctDNA杂交对该传感器的性能进行检测。结果表明,当cpDNA浓度为100 nM时,浓度范围在25~100 nM的ctDNA与少层MoS_(2)纳米片分散液的吸光度呈反比线性关系。在401和448 nm波长处时,少层MoS_(2)纳米片分散液的吸光度与ctDNA浓度的线性回归方程分别为Y=0.23557-0.00070X,R^(2)=0.94222和Y=0.21253-0.00050X,R^(2)=0.95141。所构建的光学生物传感器成功地实现了对癌症标志物ctDNA的检测;为未来的体外癌症检测和诊断提供了一种有效的传感策略。 展开更多
关键词 少层MoS_(2)纳米片 CTDNA 生物传感器 紫外光谱
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基于二维钙钛矿(PEA)_(2)PbI_(4)的光电探测器
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作者 蔡凯 靳志文 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2023年第9期1069-1075,I0004,共8页
二维(2D)钙钛矿以其固有的量子阱结构、较大的激子结合能和良好的稳定性,在光电应用领域中具有广阔的前景。然而,提高二维钙钛矿薄膜质量、降低成本并简化制备工艺仍然面临巨大的挑战。本工作在低退火温度(80℃)且无需其他特殊处理的条... 二维(2D)钙钛矿以其固有的量子阱结构、较大的激子结合能和良好的稳定性,在光电应用领域中具有广阔的前景。然而,提高二维钙钛矿薄膜质量、降低成本并简化制备工艺仍然面临巨大的挑战。本工作在低退火温度(80℃)且无需其他特殊处理的条件下,采用溶液法制备高质量二维钙钛矿(PEA)_(2)PbI_(4)薄膜,并进一步制备了光电探测器。结果表明,这种光电探测器有较低的暗电流(10^(-11)A),在450 nm光照下具有良好的响应度(107 mA·W^(-1))、较高的探测率(2.05×10^(12)Jones)和快速响应时间(250μs/330μs)。持续控制光照1200 s后,器件可以保持95%的光电流。此外,器件静置30 d后光电流几乎保持不变。本研究为开发稳定和高性能光电器件提供了良好的途径。 展开更多
关键词 二维钙钛矿 (PEA)_(2)pbi_(4) 光电探测器 低需求制备
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活性MoS_(2)纳米片剥离油膜机理研究
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作者 梁拓 王绘鹏 +5 位作者 何琛 杨昌华 屈鸣 侯吉瑞 杨二龙 柏明星 《油气地质与采收率》 CAS CSCD 北大核心 2024年第2期138-147,共10页
纳米材料可以提高原油采收率,但目前对于纳米材料的研究主要集中在球形纳米材料的性能上,对于二维片状纳米材料的研究甚少。自主合成了两亲性MoS_(2)片状纳米材料(活性MoS_(2)纳米片)用于大幅度提高水驱后原油采收率,针对活性MoS_(2)纳... 纳米材料可以提高原油采收率,但目前对于纳米材料的研究主要集中在球形纳米材料的性能上,对于二维片状纳米材料的研究甚少。自主合成了两亲性MoS_(2)片状纳米材料(活性MoS_(2)纳米片)用于大幅度提高水驱后原油采收率,针对活性MoS_(2)纳米片在固体表面上的铺展规律进行系列研究,阐明了活性MoS_(2)纳米片对固体表面油膜的作用机理。基于气-水-固相接触角的测量,明确了油湿性石英片在活性MoS_(2)纳米片驱油体系中浸泡120 h后,水滴平衡接触角保持90°不变,石英片表面由油湿转变成中性润湿;地层水和质量分数为0.15%的SiO_(2)纳米流体均无法使油膜在固体表面产生楔形膜,而质量分数为0.005%的活性MoS_(2)纳米片驱油体系可在油-水-固接触区域形成明显的楔形膜,产生结构分离压力,最终剥离固体表面油膜。研究发现,在质量分数为0.005%的活性MoS_(2)纳米片驱油体系中,油膜在固体表面的收缩过程中会形成内、外两条接触线,内、外接触线的收缩速度分别是0.6617×10^(-5)和8.5817×10^(-5)cm/s;从热力学角度计算出油膜在收缩过程中油-水-固混合体系Gibbs自由能的增量呈负增长,证明油膜在活性MoS_(2)纳米片驱油体系中的收缩是自发进行的。该项研究成果说明质量分数为0.005%的活性MoS_(2)纳米片驱油体系具有高效的驱油能力。 展开更多
关键词 活性MoS_(2)纳米片 结构分离压力 润湿性 Gibbs自由能 驱油效率
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MoS_(2)纳米片功能化PAN锂金属电池隔膜的制备及锂枝晶抑制作用
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作者 董帮达 翟云云 +3 位作者 刘海清 黄振鹏 李祖光 李蕾 《高等学校化学学报》 SCIE EI CSCD 北大核心 2024年第1期145-153,共9页
引导锂离子流的均匀分布可以有效抑制锂枝晶的形成-生长,推动锂金属电池的产业化应用.本文采用化学插层法制备出单层或少层、结构完整的MoS_(2)纳米片,将二维MoS_(2)纳米片喷涂到静电纺聚丙烯腈(PAN)纤维膜上,制得MoS_(2)@PAN复合隔膜.M... 引导锂离子流的均匀分布可以有效抑制锂枝晶的形成-生长,推动锂金属电池的产业化应用.本文采用化学插层法制备出单层或少层、结构完整的MoS_(2)纳米片,将二维MoS_(2)纳米片喷涂到静电纺聚丙烯腈(PAN)纤维膜上,制得MoS_(2)@PAN复合隔膜.MoS_(2)涂层的引入不仅提高了离子电导率(1.02 mS/cm)、Li+迁移数(0.59)和电解液亲和性,而且降低了复合隔膜的孔径,使其孔径分布均一.这些特性协同作用,调控了通过MoS_(2)@PAN复合隔膜的Li+流分布,促进了Li+在锂金属表面的均匀沉积,抑制了锂枝晶的形成-生长.因此,MoS_(2)@PAN复合隔膜组装的Li/Li电池在1 mA/cm^(2)电流密度下以14 mV的超低过电位可稳定循环长达500 h,循环后的锂金属表面没有明显的枝晶生长.此外,MoS_(2)@PAN复合隔膜组装的LiFePO_(4)/Li电池在2C倍率下循环550次后保持92%的初始容量,表现出更稳定的循环性能.通过隔膜调节Li+通量实现了锂的均匀沉积,为抑制锂枝晶的形成-生长提供了一种可行的策略. 展开更多
关键词 二维材料 MoS_(2)纳米片 锂金属电池隔膜 调节Li+通量 抑制锂枝晶形成-生长
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2D Janus polymer nanosheets for enhancing oil recovery:From material ppreparation to property evaluation
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作者 Hao Shen Zi-Hao Yang +6 位作者 Guan-Zhong Wang Yi-Lin Xiong Qi-Chao Lv Qi Cao Qi-Qi Niu Yi-Bo Wang Zhao-xia Dong 《Petroleum Science》 SCIE EI CAS CSCD 2023年第3期1584-1597,共14页
Janus amphiphilic polymer nanosheets(JAPNs)with anisotropic morphology and distinctive perfor-mance have aroused widespread interest.However,due to the difficulty in synthesis and poor dispersion stability,JAPNs have ... Janus amphiphilic polymer nanosheets(JAPNs)with anisotropic morphology and distinctive perfor-mance have aroused widespread interest.However,due to the difficulty in synthesis and poor dispersion stability,JAPNs have been scarcely reported in the field of enhancing oil recovery(EOR).Herein,a kind of organic-based flexible JAPNs was prepared by paraffin emulsion methods.The lateral sizes of JAPNs were ranging from hundreds of nanometers to several micrometers and the thickness was about 3 nm.The organic-based nanosheets were equipped with remarkably flexible structures,which could improve their injection performance.The dispersion and interfacial properties of JAPNs were studied systematically.By modification of crosslinking agent containing multiple amino groups,the JAPNs had excellent hydro-philicity and salt resistance compared with conventional inorganic or composite nanosheets.The settling time of nanosuspension with NaCl and CaCl_(2) at a low salinity of 1000 mg/L was over 240 h.The value could also remain 124 h under the salinity of 10,000 mg/L NaCl.With the dual functionalities of Janus amphiphilic nature and nanoparticles'Pickering effect,JAPNs could change rock wettability and form emulsions as"colloidal surfactants",In particular,a new technology called optical microrheology was pioneered to explore the destabilization state of nanosuspensions for the first time.Since precipitation lagged behind aggregation,especially for stable suspension systems,the onset of the unstable behavior was difficult to be detected by conventional methods,which should be the indicator of reduced effec-tiveness for nanofluid products.In addition,the oil displacement experiments demonstrated that the JAPNs could enhance oil recovery by 17.14%under an ultra-low concentration of 0.005%and were more suitable for low permeability cores.The findings can help for a better understanding of the material preparation of polymer nanosheets.We also hope that this study could shed more light on the nano-flooding technology for EOR. 展开更多
关键词 2D materials Polymer nanosheets Enhance oil recovery Janus nature Amphiphilic property
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From kesterite 2D nanosheets to wurtzite 1D nanorods:controllable synthesis of Cu-Zn-Sn-S and their application in electrocatalytic hydrogen evolution
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作者 Yu Li Shuaibing Wang +4 位作者 Jie Chen Ouyang Lin Zhe Yin Chunhe Yang Aiwei Tang 《Journal of Semiconductors》 EI CAS CSCD 2023年第12期104-110,共7页
As typical quarternary copper-based chalcogenides,Cu–Zn–Sn–S nanocrystals(CZTS NCs)have emerged as a newfashioned electrocatalyst in hydrogen evolution reactions(HERs).Oleylamine(OM),a reducing surfactant and solve... As typical quarternary copper-based chalcogenides,Cu–Zn–Sn–S nanocrystals(CZTS NCs)have emerged as a newfashioned electrocatalyst in hydrogen evolution reactions(HERs).Oleylamine(OM),a reducing surfactant and solvent,plays a significant role in the assisting synthesis of CZTS NCs due to the ligand effect.Herein,we adopted a facile one-pot colloidal method for achieving the structure evolution of CZTS NCs from 2D nanosheets to 1D nanorods assisted through the continuous addition of OM.During the process,the mechanism of OM-induced morphology evolution was further discussed.When merely adding pure 1-dodecanethiol(DDT)as the solvent,the CZTS nanosheets were obtained.As OM was gradually added to the reaction,the CZTS NCs began to grow along the sides of the nanosheets and gradually shrink at the top,followed by the formation of stable nanorods.In acidic electrolytic conditions,the CZTS NCs with 1.0 OM addition display the optimal HER activity with a low overpotential of 561 m V at 10 m A/cm^(2) and a small Tafel slope of 157.6 m V/dec compared with other CZTS samples.The enhancement of HER activity could be attributed to the contribution of the synergistic effect of the diverse crystal facets to the reaction. 展开更多
关键词 2D nanosheets 1D nanorods structure evolution Cu-Zn-Sn-S electrocatalytic hydrogen evolution
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H_(2)O_(2)刻蚀MoS_(2)纳米片增强CO_(2)催化加氢性能
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作者 周维 赵世熙 +3 位作者 谢欣雨 陆诗建 倪中海 杨菲菲 《洁净煤技术》 CAS CSCD 北大核心 2024年第1期173-179,共7页
CO_(2)催化加氢制备高附加值化学品是缓解温室效应,实现人类社会可持续发展的关键技术之一。二维MoS_(2)材料由于其特殊的层状结构和表面丰富可调的S缺陷位,在CO_(2)活化与转化中被广泛关注,将MoS_(2)催化剂用于CO_(2)加氢的关键在于表... CO_(2)催化加氢制备高附加值化学品是缓解温室效应,实现人类社会可持续发展的关键技术之一。二维MoS_(2)材料由于其特殊的层状结构和表面丰富可调的S缺陷位,在CO_(2)活化与转化中被广泛关注,将MoS_(2)催化剂用于CO_(2)加氢的关键在于表面S空位的构建。为开发高效构建S空位工艺,以MoS_(2)纳米片为基础,利用H_(2)O_(2)刻蚀法在其表面引入S空位,对比了H_(2)O_(2)刻蚀前后CO_(2)在常压和高压下的反应性能。研究表明,H_(2)O_(2)刻蚀能显著提升S空位含量,且不会改变MoS_(2)的晶相结构,也未影响S空位的化学性质,从而明显提升CO_(2)催化加氢的转化率,但不影响产物分布。在常压条件下,S空位主要催化CO_(2)解离加氢为CO,选择性达96%以上;而在高压(5 MPa)低温(180℃)条件下能以较高的选择性(79%)催化CO_(2)加氢为甲醇,升高反应温度会提升CO_(2)转化率,但甲醇的选择性会显著降低,同时伴随甲烷的生成。本研究提供了一种简便高效的构造S空位的制备工艺,为MoS_(2)催化剂的工业化应用提供一定的理论和技术支撑。 展开更多
关键词 MoS_(2)纳米片 H_(2)O_(2)刻蚀 S空位 CO_(2)加氢 甲醇 CO
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Highly Selective Electrocatalytic CuEDTA Reduction by MoS_(2) Nanosheets for Efficient Pollutant Removal and Simultaneous Electric Power Output
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作者 Hehe Qin Xinru Liu +2 位作者 Xiangyun Liu Hongying Zhao Shun Mao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第11期61-73,共13页
Electrocatalytic reduction of ethylenediamine tetraacetic acid copper(CuEDTA),a typical refractory heavy metal complexation pollutant,is an environmental benign method that operates at mild condition.Unfortunately,the... Electrocatalytic reduction of ethylenediamine tetraacetic acid copper(CuEDTA),a typical refractory heavy metal complexation pollutant,is an environmental benign method that operates at mild condition.Unfortunately,the selective reduction of CuEDTA is still a big challenge in cathodic process.In this work,we report a MoS_(2) nanosheet/graphite felt(GF)cathode,which achieves an average Faraday efficiency of 29.6%and specific removal rate(SRR)of 0.042 mol/cm^(2)/h for CuEDTA at−0.65 V vs SCE(saturated calomel electrode),both of which are much higher than those of the commonly reported electrooxidation technology-based removal systems.Moreover,a proofof-concept CuEDTA/Zn battery with Zn anode and MoS_(2)/GF cathode is demonstrated,which has bifunctions of simultaneous CuEDTA removal and energy output.This is one of the pioneer studies on the electrocatalytic reduction of heavy metal complex and CuEDTA/Zn battery,which brings new insights in developing efficient electrocatalytic reduction system for pollution control and energy output. 展开更多
关键词 Electrocatalytic reduction CuEDTA removal MoS_(2)nanosheet CuEDTA/Zn battery Faraday efficiency
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The enhancement of performance and imbibition effect of slickwater-based fracturing fluid by using MoS_(2)nanosheets
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作者 Hang Xu Yuan Li +6 位作者 Guo-Lin Yu Sa-Sa Yang Bo-Jun Li Fu-Jian Zhou Er-Dong Yao Hao Bai Zhi-Yu Liu 《Petroleum Science》 SCIE EI CAS CSCD 2023年第4期2187-2201,共15页
Slickwater-based fracturing fluid has recently garnered significant attention as the major fluid for volumetric fracturing;however,lots of challenges and limitations such as low viscosity,poor salt tolerance,and possi... Slickwater-based fracturing fluid has recently garnered significant attention as the major fluid for volumetric fracturing;however,lots of challenges and limitations such as low viscosity,poor salt tolerance,and possible formation damage hinder the application of the conventional simple slickwater-based fracturing fluid.In addition,nanomaterials have proven to be potential solutions or improvements to a number of challenges associated with the slickwater.In this paper,molybdenum disulfide(MoS_(2))nanosheets were chemically synthesized by hydrothermal method and applied to improve the performance of conventional slickwater-based fracturing fluid.Firstly,the microstructure characteristics and crystal type of the MoS_(2)nanosheets were analyzed by SEM,EDS,TEM,XPS,and Raman spectroscopy techniques.Then,a series of evaluation experiments were carried out to compare the performance of MoS_(2)nanosheet-modified slickwater with the conventional slickwater,including rheology,drag reduction,and sand suspension.Finally,the enhanced imbibition capacity and potential mechanism of the nanosheet-modified slickwater were systematically investigated.The results showed that the self-synthesized MoS_(2)nanosheets displayed a distinct ultrathin flake-like morphology and a lateral size in the range of tens of nanometers.In the nano-composites,each MoS_(2)nanosheet plays the role of cross-linking point,so as to make the spatial structure of the entire system more compact.Moreover,nanosheet-modified slickwater demonstrates more excellent properties in rheology,drag reduction,and sand suspension.The nanosheet-modified slickwater has a higher apparent viscosity after shearing 120 min under 90℃ and 170 s^(−1).The maximum drag reduction rate achieved 76.3%at 20℃,and the sand settling time of proppants with different mesh in the nano-composites was prolonged.Spontaneous imbibition experiments showed that the gel-breaking fluid of nanosheet-modified slickwater exhibited excellent capability of oil-detaching,and increase the oil recovery to∼35.43%.By observing and analyzing the interfacial behavior of MoS_(2)nanosheets under stimulated reservoir conditions,it was found that the presence of an interfacial tension gradient and the formation of a climbing film may play an essential role in the spontaneous imbibition mechanism.This work innovatively uses two-dimensional MoS_(2)nanosheets to modify regular slickwater and confirms the feasibility of flake-like nanomaterials to improve the performance of slickwater.The study also reveals the underlying mechanism of enhanced imbibition efficiency of the nano-composites. 展开更多
关键词 Slickwater-based fracturing fluid MoS_(2)nanosheet Performance evaluation spontaneous imbibition Climbing film
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富含氧空位的Bi_(4)O_(5)Br_(2)超薄纳米片用于高效压电催化生成过氧化氢
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作者 蔡豪 陈芳 +4 位作者 胡程 葛伟怡 李彤 张晓磊 黄洪伟 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第2期123-132,共10页
过氧化氢是一种重要的化工原料,广泛应用于工业和生活中的多个领域.然而,目前工业上主要采用蒽醌法生产过氧化氢,该过程存在高污染和高能耗等问题.为解决上述问题,研发人员一直致力于开发新的、环保的过氧化氢生产方法.近年研究发现,压... 过氧化氢是一种重要的化工原料,广泛应用于工业和生活中的多个领域.然而,目前工业上主要采用蒽醌法生产过氧化氢,该过程存在高污染和高能耗等问题.为解决上述问题,研发人员一直致力于开发新的、环保的过氧化氢生产方法.近年研究发现,压电催化生产过氧化氢是一种有前途的过氧化氢生产策略,但较低的能量转换效率阻碍了其进一步应用.Bi_(4)O_(5)Br_(2)材料因具有独特的层状晶体结构,高的化学稳定性,良好的可见光吸收及合适的能带结构被认为是具有较好应用前景的光催化材料.虽然Bi_(4)O_(5)Br_(2)的非中心对称结构赋予其独特的压电性能,但该特性往往被研究者忽视,导致其压电潜力未被充分利用.特别是,关于缺陷工程如何影响Bi_(4)O_(5)Br_(2)的压电性能仍存在许多未知之处,需要深入挖掘和探明.本文通过调节水热过程中乙二醇和水溶剂的比例构建了含有不同浓度氧空位的超薄Bi_(4)O_(5)Br_(2)(≈5 nm)纳米片,并研究其在纯水体系中的压电催化生成过氧化氢性能.X射线粉末衍射和高分辨率透射电镜结果证明Bi_(4)O_(5)Br_(2)催化剂的成功合成;X射线光电子能谱和电子顺磁共振(EPR)结果证明氧空位的成功构建.不同气氛下的催化性能实验、活性物种EPR测试和捕获实验结果均表明,过氧化氢的生成主要通过氧还原反应,同时需要水氧化反应的协同作用.此外,旋转环盘电流测试和捕获实验结果进一步表明,过氧化氢的生成主要通过两步单电子的氧还原反应.同时,压电力显微镜和多物理场仿真软件有限元模拟结果表明,超薄结构和氧空位共同增强了所制样品的压电响应和压电电势,因此促进了压电诱导的电荷分离和转移,进而产生更大的压电电流响应和更小的电化学阻抗.差分电荷和Bader电荷研究结果表明,氧空位的存在增强了催化剂与氧气之间的电荷传输和相互作用.密度泛函理论计算结果表明,氧空位增强了催化剂对氧气的吸附和活化能力,并大幅降低反应过程的吉布斯自由能.具有最优氧空位浓度的Bi_(4)O_(5)Br_(2)超薄纳米片表现出很好的催化生成过氧化氢性能,在纯水体系中过氧化氢的生成速率为620μmol g^-(1)h^(-1)(是不含氧空位Bi_(4)O_(5)Br_(2)的2.54倍),在牺牲体系中的生成速率为2700μmol g^-(1)h^(-1),催化性能优于大多数已报道的压电催化剂.综上,本文揭示了Bi_(4)O_(5)Br_(2)作为新型压电催化剂在高效合成过氧化氢中的潜力,丰富了压电催化合成过氧化氢的材料体系,同时为探索缺陷工程和纳米结构协同增强材料压电催化活性提供了参考. 展开更多
关键词 Bi_(4)O_(5)Br_(2) 氧空位 超薄纳米片 压电催化 过氧化氢生成
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Binary molten salt in situ synthesis of sandwich-structure hybrids of hollowβ-Mo2C nanotubes and N-doped carbon nanosheets for hydrogen evolution reaction
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作者 Tianyu Gong Yang Liu +6 位作者 Kai Cui Jiali Xu Linrui Hou Haowen Xu Ruochen Liu Jianlin Deng Changzhou Yuan 《Carbon Energy》 SCIE EI CAS CSCD 2023年第12期111-124,共14页
Focused exploration of earth-abundant and cost-efficient non-noble metal electrocatalysts with superior hydrogen evolution reaction(HER)performance is very important for large-scale and efficient electrolysis of water... Focused exploration of earth-abundant and cost-efficient non-noble metal electrocatalysts with superior hydrogen evolution reaction(HER)performance is very important for large-scale and efficient electrolysis of water.Herein,a sandwich composite structure(designed as MS-Mo2C@NCNS)ofβ-Mo2C hollow nanotubes(HNT)and N-doped carbon nanosheets(NCNS)is designed and prepared using a binary NaCl–KCl molten salt(MS)strategy for HER.The temperature-dominant Kirkendall formation mechanism is tentatively proposed for such a three-dimensional hierarchical framework.Due to its attractive structure and componential synergism,MS-Mo2C@NCNS exposes more effective active sites,confers robust structural stability,and shows significant electrocatalytic activity/stability in HER,with a current density of 10 mA cm-2 and an overpotential of only 98 mV in 1 M KOH.Density functional theory calculations point to the synergistic effect of Mo2C HNT and NCNS,leading to enhanced electronic transport and suitable adsorption free energies of H*(ΔGH*)on the surface of electroactive Mo2C.More significantly,the MS-assisted synthetic methodology here provides an enormous perspective for the commercial development of highly active non-noble metal electrocatalysts toward efficient hydrogen evolution. 展开更多
关键词 binary molten-salt synthesis hydrogen evolution reaction Mo2C hollow nanotubes N-doped carbon nanosheets sandwich structure
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基于二维蛭石纳米片混合基质膜分离CO_(2)/CH_(4)性能研究
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作者 侯进鹏 马涛 +2 位作者 李征光 曾文涛 田维亮 《塔里木大学学报》 2024年第2期30-39,共10页
本研究以聚醚-聚酰胺嵌段共聚物(Pebax)为高分子膜基质,二维蛭石纳米片(VMT)为填充剂,制备不同填充量的混合基质膜(Pebax-VMT MMMs)。利用蛭石纳米片的结构以及其在混合基质膜内的排列方式,为CO_(2)构筑传输通道,同时提高膜对CO_(2)/CH_... 本研究以聚醚-聚酰胺嵌段共聚物(Pebax)为高分子膜基质,二维蛭石纳米片(VMT)为填充剂,制备不同填充量的混合基质膜(Pebax-VMT MMMs)。利用蛭石纳米片的结构以及其在混合基质膜内的排列方式,为CO_(2)构筑传输通道,同时提高膜对CO_(2)/CH_(4)的分离性能。通过对Pebax-VMT MMMs的表征和气体分离特性进行研究,结果表明,填充VMT后混合基质膜在CO_(2)/CH_(4)体系中的分离效果明显增强。当VMT填充量为5 wt%时,Pebax-VMT MMMs表现出了最优的CO_(2)分离性能,CO_(2)的渗透量为489.31 Barrer, CO_(2)/CH_(4)的选择性为39.96,与纯Pebax膜相比,CO_(2)渗透量增加98.3%,同时CO_(2)/CH_(4)的选择性增加84.2%。 展开更多
关键词 聚醚-聚酰胺嵌段共聚物 二维蛭石纳米片 CO_(2)/CH_(4)分离 CO_(2)通道
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