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1Graphitic carbon nitride (g-C3N4)-based nanosized heteroarrays: Promising materials for photoelectrochemical water splitting显示文摘Photoelectrochemical(PEC)water splitting is recognized as a sustainable strategy for hydrogen generation due to its abundant hydrogen source,utilization of inexhaustible solar energy,high-purity product,and environment-friendly process.To actualize a practical PEC water splitting,it is paramount to develop efficient,stable,safe,and low-cost photoelectrode materials.Recently,graphitic carbon nitride(g-C3N4)has aroused a great interest in the new generation photoelectrode materials because of its unique features,such as suitable band structure for water splitting,a certain range of visible light absorption,nontoxicity,and good stability.Some inherent defects of g-C3N4,however,seriously impair further improvement on PEC performance,including low electronic conductivity,high recombination rate of photogenerated charges,and limited visible light absorption at long wavelength range.Construction of g-C3N4-based nanosized heteroarrays as photoelectrodes has been regarded as a promising strategy to circumvent these inherent limitations and achieve the high-performance PEC water splitting due to the accelerated exciton separation and the reduced combination of photogenerated electrons/holes.Herein,we summarize in detail the latest progress of g-C3N4-based nanosized heteroarrays in PEC water-splitting photoelectrodes.Firstly,the unique advantages of this type of photoelectrodes,including the highly ordered nanoarray architectures and the heterojunctions,are highlighted.Then,different g-C3N4-based nanosized heteroarrays are comprehensively discussed,in terms of their fabrication methods,PEC capacities,and mechanisms,etc.To conclude,the key challenges and possible solutions for future development on g-C3N4-based nanosized heteroarray photoelectrodes are discussed.Liqun Wang Wenping Si Yueyu Tong Feng Hou Daniele Pergolesi Jungang Hou Thomas Lippert Shi Xue Dou Ji Liang 2020Carbon Energy2020,2,2:10
2UV-ir- radiation induced modification of PDMS fihns investigated by XPS and spectroscopic ellipsometry 显示文摘Schnyder Bernhard Lippert Thomas K0tz R(Jdiger 2003Surface Science2003,,:1
3UV -irradiation induced modification of PDMS films investigated by XPS and spectroscopic ellipsometry显示文摘BERNHARD SCHNYDER THOMAS LIPPERT ALEXANDER WOKUAUN 2003Surface Science2003,,532535:1
4Laser ablation of energetic polymer solutions: effect of viscosity and fluence on the splashing behavior显示文摘Romain Fardel Lukas Urech Thomas Lippert Claude Phipps James M. Fitz-Gerald Alexander Wokaun 2009Applied Physics A2009,,3:1
5Endoscopic treatment of clinically symptomatic leaks of thoracic esophageal anastomoses显示文摘Matthias Pross Thomas Manger Thomas Reinheckel Lutz Mirow Dagmar Kunz Hans Lippert 2000Gastrointestinal Endoscopy2000,,1:1
6Aberrant methylation of DAPK in long-standing ulcerative colitis and ulcerative colitis-associated carcinoma显示文摘Doerthe Kuester Thomas Guenther Susanne Biesold Arndt Hartmann Frauke Bataille Petra Ruemmele Brigitte Peters Frank Meyer Daniel Schubert Ulrich R. Bohr Peter Malfertheiner Hans Lippert Andrew R.J. Silver Albert Roessner Regine Schneider-Stock 2010Pathology - Research and Practice2010,,9:1
7Solid pseudopapillary tumor of the pancreas显示文摘Stefan Piatek Thomas Manger Ingeborg R?se Hans-Ulrich Schulz Hans Lippert 2000International Journal of Pancreatology2000,,1:1
8Maternal prenatal and child organophosphate pesticide exposures and children’s autonomic function显示文摘Lesliam Quirós-Alcalá Abbey D. Alkon W. Thomas Boyce Suzanne Lippert Nicole V. Davis Asa Bradman Dana Boyd Barr Brenda Eskenazi 2011Neurotoxicology2011,,5:1
9Photocatalytic and electrochemical degradation of methylene blue by titanium dioxide显示文摘A photoanode structure for dye-sensitized solar cells has been applied into the photocatalytic/electrochemical cooperative degradation of methylene blue solutions.The low eutectic point of titanium dioxide(TiO2)with a fluorine-doped tin dioxide(FTO)conductive layer results in a high reactivity of TiO2for the photocatalytic process as well as a good electron transfer for the electrochemical process.The porous TiO2layer maintains a large surface area for the degradations.Through the combinational process,the degradation velocity was improved by*36%,compared to a pure photocatalytic process.Min Yang Xinling Liu Jikun Chen Fanqi Meng Yuliang Zhang Helmut Brandl Thomas Lippert Nuofu Chen 2014Chinese Science Bulletin2014,59,17:0
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