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Fabrication and photodegradation properties of TiO_2 nanotubes on porous Ti by anodization 被引量:8
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作者 曹国剑 崔博 +3 位作者 王文奇 唐光泽 冯义成 王丽萍 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第8期2581-2587,共7页
Both Ti foil and porous Ti were anodized in 0.5%HF and in ethylene glycol electrolyte containing 0.5%NH4F(mass fraction) separately. The results show that TiO2 nanotubes can be formed on Ti foil by both processes, whe... Both Ti foil and porous Ti were anodized in 0.5%HF and in ethylene glycol electrolyte containing 0.5%NH4F(mass fraction) separately. The results show that TiO2 nanotubes can be formed on Ti foil by both processes, whereas TiO2 nanotubes can be formed on porous Ti only in the second process. The overhigh current density led to the failure of the formation nanotubes on porous Ti in 0.5%HF electrolyte. TiO2 nanotubes were characterized by SEM and XRD. TiO2 nanotubes on porous Ti were thinner than those on Ti foil. Anatase was formed when TiO2 nanotubes were annealed at 400 °C and fully turned into rutile at 700 °C. To obtain good photodegradation, the optimal heat treatment temperature of TiO2 nanotubes was 450 °C. The porosity of the substrates influenced photodegradation properties. TiO2 nanotubes on porous Ti with 60% porosity had the best photodegradation. 展开更多
关键词 TiO_2 nanotubes anodization PHOTODEGRADATION porous Ti
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N-doped graphene quantum dot-decorated N-TiO2/P-doped porous hollow g-C_(3)N_(4) nanotube composite photocatalysts for antibiotic photodegradation and H2 production 被引量:2
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作者 Jingshu Yuan Yao Zhang +2 位作者 Xiaoyan Zhang Junjie Zhang Shen’gen Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CSCD 2024年第1期165-178,共14页
Exclusive responsiveness to ultraviolet light (~3.2 eV) and high photogenerated charge recombination rate are the two primary drawbacks of pure TiO_(2). We combined N-doped graphene quantum dots (N-GQDs), morphology r... Exclusive responsiveness to ultraviolet light (~3.2 eV) and high photogenerated charge recombination rate are the two primary drawbacks of pure TiO_(2). We combined N-doped graphene quantum dots (N-GQDs), morphology regulation, and heterojunction construction strategies to synthesize N-GQD/N-doped TiO_(2)/P-doped porous hollow g-C_(3)N_(4) nanotube (PCN) composite photocatalysts (denoted as G-TPCN). The optimal sample (G-TPCN doped with 0.1wt% N-GQD, denoted as 0.1% G-TPCN) exhibits significantly enhanced photoabsorption, which is attributed to the change in bandgap caused by elemental doping (P and N), the improved light-harvesting resulting from the tube structure, and the upconversion effect of N-GQDs. In addition, the internal charge separation and transfer capability of0.1% G-TPCN are dramatically boosted, and its carrier concentration is 3.7, 2.3, and 1.9 times that of N-TiO_(2), PCN, and N-TiO_(2)/PCN(TPCN-1), respectively. This phenomenon is attributed to the formation of Z-scheme heterojunction between N-TiO_(2) and PCNs, the excellent electron conduction ability of N-GQDs, and the short transfer distance caused by the porous nanotube structure. Compared with those of N-TiO_(2), PCNs, and TPCN-1, the H2 production activity of 0.1%G-TPCN under visible light is enhanced by 12.4, 2.3, and 1.4times, respectively, and its ciprofloxacin (CIP) degradation rate is increased by 7.9, 5.7, and 2.9 times, respectively. The optimized performance benefits from excellent photoresponsiveness and improved carrier separation and migration efficiencies. Finally, the photocatalytic mechanism of 0.1% G-TPCN and five possible degradation pathways of CIP are proposed. This study clarifies the mechanism of multiple modification strategies to synergistically improve the photocatalytic performance of 0.1% G-TPCN and provides a potential strategy for rationally designing novel photocatalysts for environmental remediation and solar energy conversion. 展开更多
关键词 N-doped TiO_(2) N-doped graphene quantum dots P-doped g-C_(3)N_(4) porous hollow nanotube heterojunction photocatalysis
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Influence of TiO_2 seeding layers on phase composition of lead magnesium niobate-lead titanate thin films prepared by RF magnetron sputtering
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作者 WANG Junming,LI Weili,and FEI Weidong School of Materials Science & Engineering,Harbin Institute of Technology,Harbin 150001,China 《Rare Metals》 SCIE EI CAS CSCD 2007年第S1期205-209,共5页
The influence of amorphous TiO_2 seeding layers on the phase composition of lead magnesium niobate-lead titanate(0.7Pb(Mg1/3Nb2/3)O3-0.3PbTiO3,PMN-PT) films deposited on Pt/Ti/SiO2/Si substrate by RF magnetron sputter... The influence of amorphous TiO_2 seeding layers on the phase composition of lead magnesium niobate-lead titanate(0.7Pb(Mg1/3Nb2/3)O3-0.3PbTiO3,PMN-PT) films deposited on Pt/Ti/SiO2/Si substrate by RF magnetron sputtering was examined.The relation between seeding layer thickness and phase composition at different post annealing temperature was observed by XRD.The thickness of amorphous TiO2 seeding layer and post annealing temperature had remarkable effects on PMN-PT film phase composition.When amorphous seeding layer becomes thick,a new phase of Nb2O5 exists in the films.Only when the seeding layer thickness is suitable,the film with pure perovskite phase can be attained. 展开更多
关键词 PMN-PT film AMORPHOUS TiO_2 seeding layers RF magnetron sputtering
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Morphology Control of TiO_(2)Nanotubes towards High-Efficient Electrodes for Supercapacitor
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作者 WANG Jin CHEN Guangbing +1 位作者 WANG Chunrui LI Hui 《Journal of Donghua University(English Edition)》 CAS 2024年第4期377-387,共11页
This article studies the role of electrochemical parameters in controlling the morphology of oxidized TiO_(2)nanotubes and the electrochemical performance of modified TiO_(2)nanotubes.Humidity is a key factor for fabr... This article studies the role of electrochemical parameters in controlling the morphology of oxidized TiO_(2)nanotubes and the electrochemical performance of modified TiO_(2)nanotubes.Humidity is a key factor for fabricating TiO_(2)nanotubes.When the relative humidity belows 70%,the TiO_(2)nanotubes can be successfully prepared.What's more,by changing the anodization voltage and time,the diameter and the length of TiO_(2)nanotubes can be adjusted.In addition,the TiO_(2)nanotubes are modified through electrochemical self-doping and loading Pt metal particles on the surface of the nanotubes,which promotes the performance of the supercapacitor.The sample anodized at 100 V for 3 h has a specific capacity of up to 2.576 mF/cm~2 at a scan rate of 100 mV/s after self-doping,and its capacity retention rate still remains at 89.55%after 5000 cycles,demonstrating excellent cycling stability.The Pt-modified sample has a specific capacity of up to 3.486 mF/cm~2 at the same scan rate,exhibiting more outstanding electrochemical performance. 展开更多
关键词 TiO_(2)nanotube anodization CONDUCTIVITY SUPERCAPACITOR
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纳米TiO_2的电化学嵌锂研究 被引量:7
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作者 兰英 刘建文 +4 位作者 高学平 周杏第 曲金秋 吴锋 宋德瑛 《电化学》 CAS CSCD 2004年第2期133-136,共4页
 应用苛性钠水热法制备粒度均匀、分散性好、质子钛酸盐纳米管(直径约10~15nm).经加热烧结脱水后,该纳米管逐渐转变成具有锐钛矿相结构的纳米柱(直径约15~20nm).初步研究表明,这种具有锐钛矿相结构的纳米柱,其电化学可逆嵌/脱锂容量...  应用苛性钠水热法制备粒度均匀、分散性好、质子钛酸盐纳米管(直径约10~15nm).经加热烧结脱水后,该纳米管逐渐转变成具有锐钛矿相结构的纳米柱(直径约15~20nm).初步研究表明,这种具有锐钛矿相结构的纳米柱,其电化学可逆嵌/脱锂容量较高,但循环稳定性还有待改进提高. 展开更多
关键词 纳米柱 二氧化钛 电化学嵌锂性能 锐钛矿相结构 锂离子电池 纳米管
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包覆TiO_(2)保护层抑制磷化镍钴在水中腐蚀
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作者 杨博 吕功煊 马建泰 《无机化学学报》 北大核心 2025年第2期365-384,共20页
本工作研究了镍钴双金属磷化物(Ni-Co-P)在水溶液中的稳定性。结果显示,Ni-Co-P能与H_(2)O反应,发生自腐蚀生成Ni^(2+)、Co^(2+)和PO43-离子,同时产生H_(2)。Ni-Co-P与H_(2)O的自腐蚀反应速率受到镍钴比例影响,Ni-Co-P中的Co含量升高,... 本工作研究了镍钴双金属磷化物(Ni-Co-P)在水溶液中的稳定性。结果显示,Ni-Co-P能与H_(2)O反应,发生自腐蚀生成Ni^(2+)、Co^(2+)和PO43-离子,同时产生H_(2)。Ni-Co-P与H_(2)O的自腐蚀反应速率受到镍钴比例影响,Ni-Co-P中的Co含量升高,其在水中的腐蚀速率降低。详细研究了镍、钴投料比(nNi/nCo)为1∶2制备的Ni-Co-P在水中的腐蚀行为,其在水中的腐蚀速率与溶液pH值、氧气含量、光照、温度等因素有关。为了抑制Ni-Co-P(nNi/nCo=1/2)在水溶液中的腐蚀,在其表面包裹一层惰性TiO2保护层,这层TiO2保护层能有效减缓Ni-Co-P在水中的腐蚀,增强其稳定性。 展开更多
关键词 双金属磷化物 水溶液 稳定性 TiO2保护层
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钠离子电池层状氧化物正极材料的表界面修饰改性及其产气抑制效应
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作者 朱晓天 黄方鼎 +1 位作者 朱文昌 赵建庆 《无机化学学报》 北大核心 2025年第2期254-266,共13页
基于原子层沉积技术(ALD)制备TiO_(2)论文和Al_(2)O_(3)纳米层并结合高温热处理优化工艺,研究了异质氧化物双层表面包覆和晶格内双阳离子梯度掺杂的2种表界面修饰法对NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)(NFM)正极材料电化学储钠性能和热... 基于原子层沉积技术(ALD)制备TiO_(2)论文和Al_(2)O_(3)纳米层并结合高温热处理优化工艺,研究了异质氧化物双层表面包覆和晶格内双阳离子梯度掺杂的2种表界面修饰法对NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)(NFM)正极材料电化学储钠性能和热稳定性的提升作用,以及其产气抑制效应。结果表明,在2.0~4.0V(vsNa/Na+)工作电压和1C(120mA·g^(-1))电流密度下,当容量达到第2次循环容量的60%时,经表面包覆的NFM@TiO2(10)@Al2O3(10)和表层晶格掺杂的NFM#Ti(35)#Al(10)正极材料(括号中数字对应ALD沉积的次数)分别能够循环319和358次,显著优于未修饰NFM材料(250次),同时通过差示扫描量热法(DSC)测得的热失控温度分别提升了6.1和9.7℃。原位差分电化学质谱(DEMS)测试表明,表面包覆显著抑制了H2等主要气体成分的形成,而晶格掺杂避免了电解液的二次分解,这可能是由于电解液质子化和高电压下氧化分解等有害副反应的减少。 展开更多
关键词 NaNi_(1/3)Fe1/3Mn_(1/3)O_(2) 原子层沉积 TiO_(2)@Al_(2)O_(3)双层包覆 双阳离子共掺杂 原位产气机理 原位差分电化学质谱
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Nb掺杂二氧化钛纳米管电子结构第一性原理计算
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作者 陈阿青 梁轻 《材料导报》 北大核心 2025年第4期16-21,共6页
TiO_(2)纳米管的结构高度定向且紧密堆积,具有比表面积大、吸附能力强等优点,被广泛应用于光电催化等领域。为了进一步改性TiO_(2)纳米管,本工作通过第一性原理方法计算不同手性的Nb掺杂TiO_(2)纳米管的能带结构、态密度以及电荷密度等... TiO_(2)纳米管的结构高度定向且紧密堆积,具有比表面积大、吸附能力强等优点,被广泛应用于光电催化等领域。为了进一步改性TiO_(2)纳米管,本工作通过第一性原理方法计算不同手性的Nb掺杂TiO_(2)纳米管的能带结构、态密度以及电荷密度等电子结构。结果表明不同手性的TiO_(2)纳米管的能带结构不同,Nb掺杂提高了TiO_(2)纳米管的费米能级,降低了禁带宽度。分析态密度可知纯TiO_(2)纳米管的价带主要由O 2p轨道提供,导带主要由Ti 4d轨道提供,而Nb掺杂后Nb 4d轨道会对导带产生贡献。通过分析电荷密度可以进一步得出,与Ti原子相比,Nb原子与O原子之间的相互作用力更强,有利于增强TiO_(2)纳米管的稳定性。 展开更多
关键词 TiO_(2)纳米管 Nb掺杂 电子结构 第一性原理 密度泛函理论
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Fabrication of titanium-based alloys with bioactive surface oxide layer as biomedical implants:Opportunity and challenges 被引量:10
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作者 Mohamad Rodzi SITI NUR HAZWANI Ling Xin LIM +1 位作者 Zainovia LOCKMAN Hussain ZUHAILAWATI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第1期1-44,共44页
Titanium and its alloys have long been used as implant materials due to their outstanding mechanical properties and apparent biocompatibility.Despite this,the search for better alloys has continued to be active by res... Titanium and its alloys have long been used as implant materials due to their outstanding mechanical properties and apparent biocompatibility.Despite this,the search for better alloys has continued to be active by researchers and industries alike,as there are still pressing issues that require attention.These include(1)a large mismatch in the elastic modulus of the implant material,which causes a stress shielding problem;(2)the release of harmful ions from Ti alloys after long-term use;(3)a low bioactivity of the Ti alloy surface,which prolongs the healing process.More research has been directed toward finding new generation Ti alloys composed of more biocompatible phases and modifying the surface of Ti alloys from naturally bio-inert to bioactive in order to circumvent the problems.This review examines recent work reported on the fabrication of Ti alloys,and based on the survey,major characteristics highlighted the importance of elastic modulus and the use of non-toxic metal elements to improve biocompatibility.In terms of surface modification of Ti alloys,numerous studies have found that a nano-scaled surface oxide layer grown on the surface is always beneficial to improving the bioactivity of Ti alloys for rapid recovery after implantation.This comprehensive review focuses on the appropriate phase and composition for new Ti alloys intended for use as biomedical implants,emphasizing both fabrication and surface modification methods. 展开更多
关键词 titanium alloy orthopedic application surface modification TiO_(2)nanotubes
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Robust S-doped TiO_(2)@N,S-codoped carbon nanotube arrays as free-binder anodes for efficient sodium storage 被引量:3
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作者 Guangzeng Liu Man Huang +3 位作者 Zhengchunyu Zhang Baojuan Xi Haibo Li Shenglin Xiong 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第2期175-184,I0007,共11页
Titanium dioxide(TiO_2) has been investigated broadly as a stable,safe,and cheap anode material for sodium-ion batteries in recent years.However,the poor electronic conductivity and inherent sluggish sodium ion diffus... Titanium dioxide(TiO_2) has been investigated broadly as a stable,safe,and cheap anode material for sodium-ion batteries in recent years.However,the poor electronic conductivity and inherent sluggish sodium ion diffusion hinder its practical applications.Herein,a self-template and in situ vulcanization strategy is developed to synthesize self-supported hybrid nanotube arrays composed of nitrogen/sulfur-codoped carbon coated sulfur-doped TiO_2 nanotubes(S-TiO_2@NS-C) starting from H_2 Ti_2 O_5-H_2 O nanoarrays.The S-TiO_2@NS-C composite with one-dimensional nano-sized subunits integrates several merits.Specifically,sulfur doping strongly improves the Na~+ storage ability of TiO_2@C-N nanotubes by narrowing the bandgap of original TiO_2.Originating from the nanoarrays structures built from hollow nanotubes,carbon layer and sulfur doping,the sluggish Na~+ insertion/extraction kinetics is effectively improved and the volume variation of the electrode material is significantly alleviated.As a result,the S-TiO_2@NS-C nanoarrays present efficient sodium storage properties.The greatly improved sodium storage performances of S-TiO_2@NS-C nanoarrays confirm the importance of rational engineering and synthesis of hollow array architectures with higher complexity. 展开更多
关键词 Hollow structures nanotube arrays S-doped TiO_(2) N S-codoped carbon Sodium-ion batteries
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Interwoven scaffolded porous titanium oxide nanocubes/carbon nanotubes framework for high-performance sodium-ion battery 被引量:2
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作者 Wen-Bei Yu Wen-Da Dong +10 位作者 Chao-Fan Li Nasiruddin Macadam Jiu-Xiang Yang Guo-Bin Zhang Zhi-Yi Hu Tien-Chun Wu Yu Li Tawfique Hasan Li-Hua Chen Li-Qiang Mai Bao-Lian Su 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第8期38-46,I0002,共10页
Supercapacitor-like Na-ion batteries have attracted much attention due to the high energy density of batteries and power density of capacitors.Titanium dioxide(TiO_(2)),is a promising anode material.Its performance is... Supercapacitor-like Na-ion batteries have attracted much attention due to the high energy density of batteries and power density of capacitors.Titanium dioxide(TiO_(2)),is a promising anode material.Its performance is however seriously hindered by its low electrical conductivity and the sluggish diffusion of sodium ions(Na^(+))in the TiO_(2)matrix.Herein,this work combines porous TiO_(2)nanocubes with carbon nanotubes(CNTs)to enhance the electrical conductivity and accelerate Na^(+)diffusivity for Na-ion batteries(NIBs).In this composite,an interwoven scaffolded TiO_(2)/CNTs framework is formed to provide abundant channels and shorter diffusion pathways for electrons and ions.The in-situ X-ray diffraction and cyclic voltammetry confirm the low strain and superior transport kinetics in Na^(+)intercalation/extraction processes.In addition,the chemically bonded TiO_(2)/CNTs hybrid provides a more feasible channel for Na^(+)insertion/extraction with a much lower energy barrier.Consequently,the TiO_(2)/CNTs composite exhibits excellent electrochemical performance with a capacity of 223.4 m Ah g^(-1)at 1 C and a capacity of 142.8 m Ah g^(-1)at 10 C(3.35 A g^(-1)).The work here reveals that the combination of active materials with CNTs can largely improve the utilization efficiency and enhance their sodium storage. 展开更多
关键词 Supercapacitor-like Interwoven scaffold Na-ion battery TiO_(2) Carbon nanotubes
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Elastic properties of anatase titanium dioxide nanotubes:A molecular dynamics study
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作者 Kang Yang Liang Yang +2 位作者 Chang-Zhi Ai Zhao Wang Shi-Wei Lin 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期292-299,共8页
The elastic properties of anatase nanotubes are investigated by molecular dynamics(MD) simulations. Young's modulus, Poisson ratio, and shear modulus are calculated by transversely isotropic structure model. The c... The elastic properties of anatase nanotubes are investigated by molecular dynamics(MD) simulations. Young's modulus, Poisson ratio, and shear modulus are calculated by transversely isotropic structure model. The calculated elastic constants of bulk rutile, anatase, and Young's modulus of nanotube are in good agreement with experimental values, respectively, demonstrating that the Matsui and Akaogi(MA) potential function used in the simulation can accurately present the elastic properties of anatase titanium dioxide nanotubes. For single wall anatase titanium dioxide nanotube, the elastic moduli are shown to be sensitive to structural details such as the chirality and radius. For different chirality nanotubes with the same radius, the elastic constants are not proportional to the chiral angle. The elastic properties of the nanotubes with the chiral angle of 0° are worse than those of other chiral nanotubes. For nanotubes with the same chirality but different radii, the elastic constant, Young's modulus, and shear modulus decrease as the radius increases. But there exist maximal values in a radius range of 10 nm-15 nm. Such information can not only provide a deep understanding of the influence of geometrical structure on nanotubes mechanical properties, but also present important guidance to optimize the composite behavior by using nanotubes as the addition. 展开更多
关键词 molecular dynamics ELASTIC properties TiO_2 nanotube CHIRAL angle RADIUS
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TiO_(2)/SnO_(2)electron transport double layers with ultrathin SnO_(2)for efficient planar perovskite solar cells
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作者 Can Li Hongyu Xu +2 位作者 Chongyang Zhi Zhi Wan Zhen Li 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第11期74-81,共8页
The electron transport layer(ETL)plays an important role on the performance and stability of perovskite solar cells(PSCs).Developing double ETL is a promising strategy to take the advantages of different ETL materials... The electron transport layer(ETL)plays an important role on the performance and stability of perovskite solar cells(PSCs).Developing double ETL is a promising strategy to take the advantages of different ETL materials and avoid their drawbacks.Here,an ultrathin SnO_(2)layer of~5 nm deposited by atomic layer deposit(ALD)was used to construct a TiO_(2)/SnO_(2)double ETL,improving the power conversion efficiency(PCE)from 18.02%to 21.13%.The ultrathin SnO_(2)layer enhances the electrical conductivity of the double layer ETLs and improves band alignment at the ETL/perovskite interface,promoting charge extraction and transfer.The ultrathin SnO_(2)layer also passivates the ETL/perovskite interface,suppressing nonradiative recombination.The double ETL achieves outstanding stability compared with PSCs with TiO_(2)only ETL.The PSCs with double ETL retains 85%of its initial PCE after 900 hours illumination.Our work demonstrates the prospects of using ultrathin metal oxide to construct double ETL for high-performance PSCs. 展开更多
关键词 atomic layer deposit TiO_(2) SnO_(2) electron transport layer stability
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Electrocatalytic production of glycolic acid via oxalic acid reduction on titania debris supported on a TiO_(2)nanotube array
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作者 Francesco Pio Abramo Federica De Luca +4 位作者 Rosalba Passalacqua Gabriele Centi Gianfranco Giorgianni Siglinda Perathoner Salvatore Abate 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期669-678,共10页
Electrodes prepared by anodic oxidation of Ti foils are robust and not toxic materials for the electrocatalytic reduction of oxalic acid to glycolic acid, allowing the development of a renewable energy-driven process ... Electrodes prepared by anodic oxidation of Ti foils are robust and not toxic materials for the electrocatalytic reduction of oxalic acid to glycolic acid, allowing the development of a renewable energy-driven process for producing an alcoholic compound from an organic acid at low potential and room temperature. Coupled with the electrochemical synthesis of the oxalic acid from CO_(2),this process represents a new green and low-carbon path to produce added value chemicals from CO_(2). Various electrodes prepared by anodic oxidation of Ti foils were investigated. They were characterized by the presence of a TiO_(2) nanotube array together with the presence of small patches, debris, or TiO_(2) nanoparticles. The concentration of oxygen vacancies, the amount of Ti^(3+) measured by X-ray photoelectron spectroscopy(XPS) and the intensity of the anodic peak measured by cyclic voltammetry, were positively correlated with the achieved oxalic acid conversion and glycolic acid yield. The analysis of the results indicates the presence of small amorphous TiO_(2) nanoparticles(or surface patches or debris) interacting with TiO_(2) nanotubes, the sites responsible for the conversion of oxalic acid and glycolic acid yield. By varying this structural characteristic of the electrodes, it is possible to tune the glycolic acid to glyoxylic acid relative ratio. A best cumulative Faradaic efficiency(FE) of about 84% with FE to glycolic acid around 60% and oxalic conversion about 30% was observed. 展开更多
关键词 Oxalic acid TiO_(2)nanotubes Glyoxylic acid Glycolic acid ELECTROCATALYSIS
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Phase control and stabilization of 1T-MoS_(2) via black TiO_(2-x)nanotube arrays supporting for electrocatalytic hydrogen evolution
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作者 Ting Zhang Tingxuan Yang +3 位作者 Guoxing Qu Saifang Huang Peng Cao Wei Gao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期71-77,共7页
1T phase MoS_(2)(1T-MoS_(2)) is a promising substitute of platinum electrocatalyst for hydrogen evolution reaction(HER)due to its high intrinsic activity but suffering from thermodynamical instability.Although great e... 1T phase MoS_(2)(1T-MoS_(2)) is a promising substitute of platinum electrocatalyst for hydrogen evolution reaction(HER)due to its high intrinsic activity but suffering from thermodynamical instability.Although great efforts have been made to synthesize 1T-MoS_(2) and enhance its stability,it remains a big challenge to realize the phase control and stabilization of 1T-MoS_(2).Herein,based on crystal field theory analysis,we propose a new solution by designing an electrocatalyst of 1T-MoS_(2) nanosheets anchoring on black TiO2-xnanotube arrays in-situ grown on Ti plate(1T-MoS_(2)/TiO_(2-x)@Ti).The black TiO_(2-x)substrate is expected to play as electron donors to increase the charge in Mo 4 d orbits of 1T-MoS_(2) and thus weaken the asymmetric occupation of electrons in the Mo 4 d orbits.Experimental results demonstrate that black TiO_(2-x)nanotubes shift electrons to MoS_(2) and induce MoS_(2) to generate more 1 T phase due to stabilizing the 1T-MoS_(2) nanosheets compared with a Ti substrate.Thus 1T-MoS_(2/)TiO_(2-x)@Ti shows much improved HER performance with a small Tafel slope of 42 m V dec^(-1) and excellent catalytic stability with negligible degradation for 24 h.Theoretical calculations confirm that the black TiO_(2-x)substrate can effectively stabilize metastable 1T-MoS_(2) due to electrons transferring from black TiO_(2-x)to Mo 4 d orbits.This work sheds light on the instability of 1T-MoS_(2) and provides an essential method to stabilize and efficiently utilize 1T-MoS_(2) for HER. 展开更多
关键词 1T-MoS_(2) Black TiO_(2-x)nanotube Hydrogen evolution reaction Phase control ELECTROCATALYST
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Influence of MnO_(x)deposition on TiO_(2)nanotube arrays for electrooxidation
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作者 Kaihang Zhang Yuanzheng Zhang +6 位作者 Su Liu Xin Tong Junfeng Niu Dong Wang Junchen Yan Zhaoyang Xiong John Crittenden 《Green Energy & Environment》 SCIE EI CSCD 2023年第2期612-618,共7页
TiO_(2)has demonstrated outstanding performance in electrochemical advanced oxidation processes(EAOPs)due to its structural stability and high oxygen overpotential.However,there is still much room for improving its el... TiO_(2)has demonstrated outstanding performance in electrochemical advanced oxidation processes(EAOPs)due to its structural stability and high oxygen overpotential.However,there is still much room for improving its electrochemical activity.Herein,narrow bandgap manganese oxide(MnO_(x))was composited with TiO_(2)nanotube arrays(TiO_(2)NTAs)that in-situ oxidized on porous Ti sponge,forming the MnO_(x)-TiO_(2)NTAs anode.XANES and XPS analysis further proved that the composition of MnO_(x)is Mn2O3.Electrochemical characterizations revealed that increasing the composited concentration of MnO_(x)can improve the conductivity and reduce oxygen evolution potential so as to improve the electrochemical activity of the composited MnO_(x)-TiO_(2)NTAs anode.Meanwhile,the optimal degradation rate of benzoic acid(BA)was achieved using MnO_(x)-TiO_(2)NTAs with a MnO_(x)concentration of 0.1 mmol L^(-1),and the role of MnO_(x)was proposed based on DFT calculation.Additionally,the required electrical energy(EE/O)to destroy BA was optimized by varying the composited concentration of MnO_(x)and the degradation voltage.These quantitative results are of great significance for the design and application of high-performance materials for EAOPs. 展开更多
关键词 TiO_(2)nanotube arrays Oxidation mechanism Energy efficiency assessment MnO_(x)band structure Electrochemical advanced oxidation processes
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基于p-n异质结CuO/TiO_(2)复合物高效的载流子分离能力构建超灵敏AFP光电化学分析
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作者 郑德论 张锐龙 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2024年第8期52-59,共8页
将TiO_(2)纳米粒子与Cu(pta)MOFs复合,通过高温煅烧策略制得CuO/TiO_(2)复合物.在最优实验条件下,基于复合物对可见光更强的吸收利用效率,CuO/TiO_(2)修饰的ITO电极展现出显著的光电化学(PEC)响应信号,其光电流值(59.4μA)分别是单组分T... 将TiO_(2)纳米粒子与Cu(pta)MOFs复合,通过高温煅烧策略制得CuO/TiO_(2)复合物.在最优实验条件下,基于复合物对可见光更强的吸收利用效率,CuO/TiO_(2)修饰的ITO电极展现出显著的光电化学(PEC)响应信号,其光电流值(59.4μA)分别是单组分TiO_(2)和CuO粒子的15.5和7.4倍.线性扫描伏安法(LSV)测试结果证实CuO/TiO_(2)/ITO电极比CuO和TiO_(2)材料具有更大的LSV响应强度.这可归因于获得的薄片层状CuO粒子及其兼有的多孔隙特征促进了光的多重散射/反射效应,同时CuO/TiO_(2)复合材料具有的典型p-n异质结构(能级带隙匹配)大幅促进了光生电荷载流子(e^(-)/h^(+))的分离与转移.选用戊二醛(GA)作为交联手臂分子,通过温和的醛胺反应将壳聚糖(CS)和anti-AFP抗体组装于CuO/TiO_(2)/ITO电极表面,再用牛血清蛋白(BSA)封闭活性位点,构建出PEC传感平台(BSA/anti-AFP/GA-CS/CuO/TiO_(2)/ITO),实现了对不同浓度甲胎蛋白(AFP)的高灵敏检测(检出限达到2.63×10^(-4) ng/mL).制备的传感电极同时展示出良好的稳定性和选择性. 展开更多
关键词 薄片层CuO粒子 CuO/TiO_(2)复合物 p-n异质结 光电化学传感器 AFP检测
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BPQDs@TNTs药物载体的构建及其缓释性能研究
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作者 陈冬冬 郑竑 《福建医药杂志》 CAS 2024年第1期21-24,共4页
目的在骨科钛板表面构建能负载阿仑膦酸钠及硫酸庆大霉素的双载药复合药物载体。方法通过阳极氧化法在TiO_(2)表面制备纳米管阵列(TNTs),动态吸附阿伦磷酸钠后再填充载有硫酸庆大霉素的载药黑磷量子点(BPQDs),管口采用肉豆蔻醇进行封装... 目的在骨科钛板表面构建能负载阿仑膦酸钠及硫酸庆大霉素的双载药复合药物载体。方法通过阳极氧化法在TiO_(2)表面制备纳米管阵列(TNTs),动态吸附阿伦磷酸钠后再填充载有硫酸庆大霉素的载药黑磷量子点(BPQDs),管口采用肉豆蔻醇进行封装,并利用X射线衍射、透射电镜进行表征,最后通过液相色谱法测定其上负载的阿仑膦酸钠及硫酸庆大霉素的缓释速率。结果X射线衍射表明构建的BPQDs@TNTs药物载体具备BP和TNTs的特征衍射峰,透射电镜扫描表明,肉豆蔻醇成功地对TNTs进行了封口,TiO_(2)纳米管中的阿仑膦酸钠及BPQDs载体的硫酸庆大霉素在72 h内已基本释放完毕,BPQDs@TNTs药物载体上阿仑膦酸钠及硫酸庆大霉素则在96 h内才基本释放完毕。结论BPQDs@TNTs药物载体能成功搭载阿仑膦酸钠及硫酸庆大霉素,且在体液中具有更好的缓释效能。 展开更多
关键词 TiO_(2)纳米管阵列 黑磷量子点 阿仑磷酸钠 硫酸庆大霉素
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溶胶-凝胶法制备二氧化钛(TiO_(2))颗粒及其在钙钛矿太阳能电池中的应用
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作者 李天晶 颜婷 +4 位作者 王颖 杨培宁 谢宁 郭婷婷 孔林涛 《功能材料》 CAS CSCD 北大核心 2024年第11期11153-11157,共5页
在溶胶-凝胶法的基础上利用两种不同的方法制备了二氧化钛(TiO_(2))颗粒,甲基橙降解实验表明两步乙醇法制备的TiO_(2)颗粒的催化降解性能优于一步法制备的TiO_(2);通过扫描电子显微镜(SEM)对TiO_(2)的表面形貌进行了表征,并利用X射线衍... 在溶胶-凝胶法的基础上利用两种不同的方法制备了二氧化钛(TiO_(2))颗粒,甲基橙降解实验表明两步乙醇法制备的TiO_(2)颗粒的催化降解性能优于一步法制备的TiO_(2);通过扫描电子显微镜(SEM)对TiO_(2)的表面形貌进行了表征,并利用X射线衍射(XRD)以及钙钛矿光电器件性能的表征可知一步法制备的TiO_(2)颗粒主要呈现出锐钛矿相,在空气的环境下将其应用于钙钛矿太阳能电池中,电池的光电转化效率(PCE)达到12.7%,而两步法制备的TiO_(2)颗粒出现了锐钛矿、金红石两种衍射峰,混晶形式使得钙钛矿电池的PCE下降至9.4%,因此可得出一步法制备的TiO_(2)作为电子传输层时可以提高钙钛矿太阳能电池的性能。 展开更多
关键词 二氧化钛颗粒 溶胶凝胶法 电子传输层 钙钛矿电池
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二步阳极氧化法制备TiO_(2)纳米管阵列复合MoS_(2)的光电化学性能研究
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作者 胡继月 刘琪 +2 位作者 来龙杰 王立鹏 汪瑞 《表面技术》 EI CAS CSCD 北大核心 2024年第22期210-219,共10页
目的 探索二步阳极氧化工艺对TiO_(2)纳米管复合MoS_(2)后样品的光电化学及半导体性能的影响。方法 利用直流脉冲稳压电源对TA1进行阳极氧化工艺处理,电压为40 V,使用的电解液为乙二醇+氯化铵水溶液,再采用220℃、6 h水热法在TiO_(2)纳... 目的 探索二步阳极氧化工艺对TiO_(2)纳米管复合MoS_(2)后样品的光电化学及半导体性能的影响。方法 利用直流脉冲稳压电源对TA1进行阳极氧化工艺处理,电压为40 V,使用的电解液为乙二醇+氯化铵水溶液,再采用220℃、6 h水热法在TiO_(2)纳米管上生长MoS_(2),得到TiO_(2)/MoS_(2)的异质结构。使用扫描电镜(SEM)观察样品的表面微观形貌,利用X射线衍射仪(XRD)分析二步阳极氧化复合MoS_(2)的晶体结构,采用光致发光光谱仪(PL)对样品光生电荷重组进行分析,使用EDS分析复合前后的成分变化,通过电化学工作站对制备的各类样品进行光电流密度、电化学阻抗和莫特肖特基曲线分析。结果 在50 min时一步阳极氧化TiO_(2)纳米管具备良好的电化学及半导体性能,再经过二步阳极氧化工艺制备了2-step TNTs样品,在此基础上复合MoS_(2),可以显著提高其电流密度,提升了大约60%,达到0.32m A/cm^(2),通过等效电路拟合得出此时的Rct为298?,光致发光强度明显减弱。结论 TiO_(2)纳米阵列能为MoS_(2)提供丰富的生长位点,也提供了许多载流子转移通道,通过协同作用来提升光电化学性能。通过二步阳极氧化法制备TiO_(2)纳米管阵列复合MoS_(2)的样品其电荷转移电阻明显降低,形成更便捷的电子传输通道,载流子的迁移速率变得更快,具有较高的电子-空穴分离效率。这一研究为二步阳极氧化复合膜的制备与性能改善提供了一种新的思路。 展开更多
关键词 二步阳极氧化 二氧化钛 纳米管 二硫化钼 光电化学性能
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