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Adsorption characteristics of ciprofloxacin onto g-MoS2<

Zhenyu Yang, Rong Xing, Wenjun Zhou, Lizhong Zhu

Frontiers of Environmental Science & Engineering 2020, Volume 14, Issue 3, doi: 10.1007/s11783-019-1218-0

Abstract: The g-MoS2 coated composites (g-MoS2-BC) were synthesized.The adsorption mechanisms of CIP on g-MoS2-BC were proposed.The g-MoS2 coated biochar (g-MoS2-BC) composites were synthesized by coating original biochar with g-MoS2The coated g-MoS2 nanosheets contributed more to CIP adsorption on the g-MoS2-BC composites due to theiron g-MoS2-BC300.

Keywords: Adsorption     Ciprofloxacin     g-MoS2 nanosheets     Biochar     Soil remediation    

growth of a-few-layered MoS on CdS nanorod for high efficient photocatalytic H production

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 752-759 doi: 10.1007/s11708-021-0779-3

Abstract: An ultrathin MoS2 was grown on CdS nanorod by a solid state method using sulfur powder asThe characterization result reveals that the ultrathin MoS2 nanosheets loaded on CdS has aThe photoelectrochemical result shows that MoS2 not only are beneficial for charge separationCompared with pure CdS, the photocatalytic activity of MoS2 loaded CdS was significantly improvedThe hydrogen evolution rate on m(MoS2): m(CdS) = 1: 50 (m is mass) reaches

Keywords: photocatalytic H2 production     CdS     MoS2 cocatalyst     charge separation    

Application of MoS in the space environment: a review

Frontiers of Mechanical Engineering 2023, Volume 18, Issue 3, doi: 10.1007/s11465-023-0755-1

Abstract: The friction properties of MoS2, a solid lubricant widely used in space, are discussed.The synergistic lubrication of MoS2 with surface textures or metals is presented.The combination of MoS2 and soft metals with surface textures is introduced to reduce theFinally, the challenges and future research interests of MoS2 films in space tribology are

Keywords: MoS2     soft metal     space environment     surface texture     synergistic effect     vibration    

hydrogen evolution and simultaneous organic pollutant degradation over an urchin-like oxygen-doped MoS

Frontiers of Environmental Science & Engineering 2022, Volume 16, Issue 10, doi: 10.1007/s11783-022-1566-z

Abstract:

● An urchin-like OMS/ZIS composite was fabricated by a facile solvothermal method.

Keywords: Dual-functional photocatalysts     Oxygen-doped MoS2/ZnIn2S4     H2   

MoS2/ZIF-8 Hybrid Materials for Environmental Catalysis: Solar-Driven Antibiotic-Degradation Article

Wen-Qian Chen, Linyue Li, Lin Li, Wen-Hui Qiu, Liang Tang, Ling Xu, Kejun Xu, Ming-Hong Wu

Engineering 2019, Volume 5, Issue 4,   Pages 755-767 doi: 10.1016/j.eng.2019.02.003

Abstract: In this paper, we demonstrate a MoS2/ZIF-8 composite photocatalyst that increases the photocatalyticThe hydrogen production rate of the MoS2/ZIF-8 nanocomposites is 1.79 times higher than thatof MoS2.This work provides a novel perspective for exploring original and efficient 1T/2H-MoS2/MOF-basedThus, 1T/2H-MoS2/MOF-based photocatalysts have excellent prospects for practical antibiotic-degradation

Keywords: 1T/2H-MoS2     ZIF-8     Antibiotic degradation     Photocatalysis    

Enhancing the photoelectrochemical performance of p-silicon through TiO coating decorated with mesoporous MoS

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 772-780 doi: 10.1007/s11708-021-0783-7

Abstract: MoS2 is a promising electrocatalyst for hydrogen evolution reaction and a good candidate forThe main challenge lies in the optimization of the microstructure of MoS2, to improve itsAn additional TiO2 necking was introduced to strengthen the bonding between the MoS2MoS2/TiO2/p-Si hybrid photocathode exhibited significantly enhanced PECAdditionally, this meso-MoS2/TiO2/p-Si photocathode showed an excellent PEC ability

Keywords: photoelectrocatalysis     hydrogen evolution     Si photocathode     mesoporous MoS2    

Magnetic Co-doped 1D/2D structured -FeO/MoS effectively activated peroxymonosulfate for efficient abatement

Frontiers of Environmental Science & Engineering 2023, Volume 18, Issue 3, doi: 10.1007/s11783-024-1797-2

Abstract:

● Magnetic Co- γ -Fe2O3/MoS2

Keywords: Magnetic Co-γ-Fe2O3/MoS2     Hydrothermal method     Bisphenol A     Degradation    

Molecular dynamics simulation on DNA translocating through MoS

Daohui Zhao, Huang Chen, Yuqing Wang, Bei Li, Chongxiong Duan, Zhixian Li, Libo Li

Frontiers of Chemical Science and Engineering 2021, Volume 15, Issue 4,   Pages 922-934 doi: 10.1007/s11705-020-2004-z

Abstract: The emergence of MoS nanopores has provided a new avenue for high performance DNA sequencing, whichHerein, molecular dynamics simulations were performed to design a conceptual device to sequence DNA with MoSAll ssDNAs adsorbed onto the MoS surface and translocated through the nanopores by transmembrane electricThe transmembrane bias and DNA-MoS interaction could regulate the speed of the translocation processThus, MoS nanopores could be employed to sequence DNA with the flexibility to regulate the translocation

Keywords: DNA sequencing     MoS2     molecular dynamics simulation     nanopore     ionic current    

Microemulsion-mediated hydrothermal synthesis of flower-like MoS

Yuxia Jiang, Donge Wang, Zhendong Pan, Huaijun Ma, Min Li, Jiahe Li, Anda Zheng, Guang Lv, Zhijian Tian

Frontiers of Chemical Science and Engineering 2018, Volume 12, Issue 1,   Pages 32-42 doi: 10.1007/s11705-017-1677-4

Abstract: The intercalated MoS nanoflowers synthesized from Na MoO (MoS -S) and H MoO (MoS -A) as molybdenumMoS nanosheets on MoS -S and MoS -A possess stacking layer numbers of 5–10 and 2–5, and slab lengthsThe interlayer distances of MoS -S and MoS -A are both enlarged from 0.62 nm to about 0.95 nm due to31.0 times higher than that over commercial bulk MoS .nanoflowers compared with commercial bulk MoS .

Keywords: microemulsion     intercalated MoS2     catalytic hydrogenation     active sites    

Enhancing the photoelectrochemical performance of p-silicon through TiO coating decorated with mesoporous MoS

Frontiers in Energy 2022, Volume 16, Issue 5,   Pages 876-877 doi: 10.1007/s11708-022-0832-x

A DNA sensor based on upconversion nanoparticles and two-dimensional dichalcogenide materials

Konstantina Alexaki, Davide Giust, Maria-Eleni Kyriazi, Afaf H. El-Sagheer, Tom Brown, Otto L. Muskens, Antonios G. Kanaras

Frontiers of Chemical Science and Engineering 2021, Volume 15, Issue 4,   Pages 935-943 doi: 10.1007/s11705-020-2023-9

Abstract: oligonucleotide-coated NaYF : Yb ; Er upconversion nanoparticles and the two-dimensional dichalcogenide materials, MoStarget and the formation of double-stranded DNA, the upconversion nanoparticles could not interact with MoS

Keywords: upconversion nanoparticles     DNA sensor     two-dimensional materials     MoS2     WS2    

第三届环境、工业和能源工程国际会议(EI2E 2019)

Conference Date: 19 Sep 2019

Conference Place: 宁夏银川

Administered by: APISE

第四届设计、机械和材料工程国际会议(D2ME 2019)

Conference Date: 26 Sep 2019

Conference Place: 釜山,韩国

Administered by: HKSME

A High Accurate Steady-state Physical Model for High-voltage VDMOS

Bao Jiaming,Sun Weifeng,Zhao Ye,Lu Shengli

Strategic Study of CAE 2008, Volume 10, Issue 2,   Pages 72-78

Abstract:

A high accurate steady-state physical model for high-voltage VDMOS is proposed in the paper. In the model, a more proper assumption result in obtaining both the electric field and the voltage in the double diffused channel region by analytical method; and after studying physical characteristic of VDMOS in detail, a differential equation concerning the electric field of the drift region is obtained, moreover, the analytical solution of this differential equation is given for the whole drift region, then the voltage drop of the drift region is obtained. The result shows that the calculation stability in the region adjacent to saturation of the drain current are improved in the paper´s model, and furthermore, the calculation prec ision of the paper´s model is high. Especially in the condition of high gate vol tage and high drain voltage it is improved to a great extent.

Keywords: VDMOS     steady-state physical model     analytical method    

Title Author Date Type Operation

Adsorption characteristics of ciprofloxacin onto g-MoS2<

Zhenyu Yang, Rong Xing, Wenjun Zhou, Lizhong Zhu

Journal Article

growth of a-few-layered MoS on CdS nanorod for high efficient photocatalytic H production

Journal Article

Application of MoS in the space environment: a review

Journal Article

hydrogen evolution and simultaneous organic pollutant degradation over an urchin-like oxygen-doped MoS

Journal Article

MoS2/ZIF-8 Hybrid Materials for Environmental Catalysis: Solar-Driven Antibiotic-Degradation

Wen-Qian Chen, Linyue Li, Lin Li, Wen-Hui Qiu, Liang Tang, Ling Xu, Kejun Xu, Ming-Hong Wu

Journal Article

Mercury removal from aqueous solution using petal-like MoS2

Ragini Pirarath, Palani Shivashanmugam, Asad Syed, Abdallah M. Elgorban, Sambandam Anandan, Muthupandian Ashokkumar

Journal Article

Enhancing the photoelectrochemical performance of p-silicon through TiO coating decorated with mesoporous MoS

Journal Article

Magnetic Co-doped 1D/2D structured -FeO/MoS effectively activated peroxymonosulfate for efficient abatement

Journal Article

Molecular dynamics simulation on DNA translocating through MoS

Daohui Zhao, Huang Chen, Yuqing Wang, Bei Li, Chongxiong Duan, Zhixian Li, Libo Li

Journal Article

Microemulsion-mediated hydrothermal synthesis of flower-like MoS

Yuxia Jiang, Donge Wang, Zhendong Pan, Huaijun Ma, Min Li, Jiahe Li, Anda Zheng, Guang Lv, Zhijian Tian

Journal Article

Enhancing the photoelectrochemical performance of p-silicon through TiO coating decorated with mesoporous MoS

Journal Article

A DNA sensor based on upconversion nanoparticles and two-dimensional dichalcogenide materials

Konstantina Alexaki, Davide Giust, Maria-Eleni Kyriazi, Afaf H. El-Sagheer, Tom Brown, Otto L. Muskens, Antonios G. Kanaras

Journal Article

第三届环境、工业和能源工程国际会议(EI2E 2019)

19 Sep 2019

Conference Information

第四届设计、机械和材料工程国际会议(D2ME 2019)

26 Sep 2019

Conference Information

A High Accurate Steady-state Physical Model for High-voltage VDMOS

Bao Jiaming,Sun Weifeng,Zhao Ye,Lu Shengli

Journal Article