Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Nenghuan Wang"'
Autor:
Dan Guo, Jiazhen Dai, Rong Ju, Qifan Zhou, Nenghuan Wang, Chunhua Wu, Hui Tao, Hui Jing, Chen Zhu, Jinxian Mao, Jiayan Xu
Publikováno v:
Frontiers in Medicine, Vol 10 (2023)
Cholesterol homeostasis disorder and hypertriglyceridemia, as common metabolic conditions, have rarely been reported to affect the immune responses to the hepatitis B vaccine. Our study found that higher high-density lipoprotein (HDL) level showed a
Externí odkaz:
https://doaj.org/article/e340dcf05ca1446391d8972321a4437c
Publikováno v:
ACS Omega, Vol 4, Iss 26, Pp 21998-22007 (2019)
Externí odkaz:
https://doaj.org/article/8738303fe6244c4794520b6122c05529
Publikováno v:
Journal of Materials Research. 37:1714-1726
Publikováno v:
ChemPlusChem. 86:1307-1315
Integrating electrolytic hydrogen production from water with thermodynamically more favorable aqueous organic oxidation reactions is highly desired, because it can enhance the energy conversion efficiency in relation to traditional water electrolysis
Publikováno v:
ACS Applied Nano Materials. 4:9034-9043
Publikováno v:
ChemistrySelect. 5:10537-10548
Publikováno v:
Catalysis Science & Technology. 10:4030-4041
The development of cost-effective and high-powered catalysts to completely decompose formaldehyde (HCHO) into CO2 and water at room temperature is an important challenge. In this study, we employed a hydrothermal method, followed by an impregnation-c
Publikováno v:
ACS Omega, Vol 4, Iss 26, Pp 21998-22007 (2019)
ACS Omega
ACS Omega
Indoor environmental quality directly affects the life quality and health of human beings, and therefore, it is highly vital to eliminate the volatile organic compounds especially formaldehyde (HCHO), which is regarded as one of the most common harmf
Publikováno v:
Journal of Environmental Chemical Engineering. 9:106174
The pursuit of efficient noble metal-free catalysts is highly desirable for possible practical application of ambient-temperature removal of indoor formaldehyde (HCHO). In this work, graphitic carbon nitride/ceric oxide (g-C3N4/CeO2) heterojunctions
Publikováno v:
Applied Surface Science. 510:145500
Bi-component Mn3O4 and MnO2 supported Pt nanoparticles (0.8 wt%) catalysts (Pt/MnOx) were prepared via hydrothermal synthesis of MnO2 and in-situ reduction of Pt precursor by NaBH4 solution over the MnO2 support. The result displayed that the Mn3O4 c