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11篇 您的检索式:作者名="Tang Xingfu"
    题名 作者 年代 出处 被引量
1Global Attractivity of Positive Periodic Solution to Periodic Lotka-Volterra Competition Systems with Pure Delay显示文摘 Cao Daomin Zou Xingfu 2006J Differential Equations2006,228,:1
2On Positive Periodic Solutions of Lotka-Volterra Competition Systems with Deviating Arguments显示文摘 Xingfu 2006Proc Amer Math Soc2006,134,:1
3Global attractivity of positive periodic solution to periodic LotkaVolterra competition sytems with pure delay显示文摘Xianhua Tang Daomin Cao Xingfu Zou 2006Journal of Differential Equation2006,228,2:1
4MnOx - CeO2 mixed oxide catalysts for complete oxidation of formaldehyde: Effect of preparation method and calcination temperature显示文摘Xingfu Tang Yonggang Li Xiumin I-Iuang 2006Applied Catalysis B: Environ- mental2006,62,:1
5MnOX - CeO2 mixed oxide catalysts for complete oxidation of formaldehyde : effect of preparation method and calcination temperature 显示文摘Xingfu Tang Yonggang Li 2006Applied Catalysis B: Environmental2006,62,:1
6Significant enhancement of catalytic activities of manganese oxide octahedral molecular sieve by marginal amount of doping vanadium显示文摘TANG Xingfu LI Junhua HAO Jiming 2010Catalysis Communications2010,11,:1
7Complete oxidation of methane on Co_(3)O_(4)-SnO_(2) catalysts显示文摘Co_(3)O_(4)-SnO_(2)hybrid oxides were prepared by the coprecipitation method and were used to oxidate methane(CH4)in presence of oxygen.The Co_(3)O_(4)-SnO_(2)with a molar ratio of Co/(Co+Sn)at 0.75 exhibited the highest catalytic activity among all the Co_(3)O_(4)-SnO_(2)hybrid oxides.Experimental results showed that the catalysts were considerably stable in the CH4 combustion reaction,and were verified by X-ray photoelectron spectra(XPS).It was found that Co_(3)O_(4)was the active species,and SnO_(2)acted as a support or a promoting component in the Co_(3)O_(4)-SnO_(2)hybrid oxides.The surface area was not a major factor that affected catalytic activity.The hydrogen temperatureprogrammed reduction(H_(2)-TPR)results demonstrated that the interaction between cobalt and tin oxides accelerated the mobility of oxygen species of Co_(3)O_(4)-SnO_(2),leading to higher catalytic activity.Xingfu TANG Jiming HAO Junhua LI 2009Frontiers of Environmental Science & Engineering2009,3,3:1
8Pt-MnOx-CeO2 catalysts for the complete oxidation of formaldehyde at ambient temperature显示文摘TANG Xingfu CHEN Junli HUANG Xiumin 2008Applied Catalysis:B:Environmental2008,81,12:1
9MnOx-CeO2 mixed oxide catalysts for complete oxidation of formaldehyde: effect of preparation method and calcination temperature 显示文摘TANG Xingfu LI Yonggang HUANG Xiumin 2006Appl Catal B2006,62,34:1
10Complete oxidation of formaldehyde over Ag/MnOx-CeO2 catalysts 显示文摘Tang Xingfu Chen Junli Shen Wenjie 2006Chemical Engineering Journal2006,118,12:1
11New horizons for therapeutic applications of nanozymes in oral infection显示文摘As a category of nanomaterials with excellent catalytic efficiency,great substrate specificity,and highrecovery efficiency,nanozymes have attracted increasing attention in various biomedical applications.Currently,numbers of nanozyme-assisted strategies have been well developed for the theranostics ofvarious diseases by taking advantages of their multienzyme-like characteristics,low cost,and highstability.As the most prevalent oral diseases,oral infection poses a global hazard to human health,andcurrent therapeutic options are insufficient to resolve all the clinical issues.Based on their admirableactivity,nanozymes can be frequently employed in the identification and treatment of various oral infectious disorders.Herein,we provide a brief review focused on the classification of nanozymes,analysesof nanozyme-based antibacterial mechanism,research progress in oral bacterial control,and representative studies of nanozyme-assisted oral inflammatory management.Moreover,major challenges andpotential opportunities regarding the use of nanozymes in oral infectious diseases are also highlightedand discussed.This review not only summarizes the recent studies of nanozymes in oral infection butalso promotes the further development of enzyme-mimetic strategies towards various oral diseases.Yanting Cai Yue Li Jin Zhang Nan Tang Xingfu Bao Zhen Liu 2023Particuology2023,,9:0
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