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6篇 您的检索式:作者名="Claesson Per"
    题名 作者 年代 出处 被引量
1The hydrophobic interaction between macroscopic surfaces显示文摘Hugo K Christenson Per M Claesson Richard M Pashley 1987Proceedings of the Indian Academy of Sciences - Chemical Sciences (-)1987,,5:1
2Capacity Control in Ground Source Heat Pump Systems: Part II: Comparative Analy- sis Between on/off Controlled and Variable Capacity Systems显示文摘Madani Hatef Claesson Joachim Lundqvist Per 2011Refrigeration2011,34,8:1
3Interactions between chitosan and SDS at a low-charged silica substrate compared to interactions in the bulk--the effect of ionic strength 显示文摘Lundin M Macakova L Dedinaite A Claesson Per 2008Langmuir2008,24,38:1
4Characterization of adsorption sites on a quartz powder from ESCA analysis of an adsorbed fatty diamine 显示文摘Marie Ernstsson Per M Claesson Sten Y Shao 1999Surf Interface Anal1999,27,:1
5Capacity control in ground source heat pump systems part II: Com- parative analysis between on/off controlled and variable ca- pacity systems 显示文摘Hater Madani Joachim Claesson Per Lundqvist 2011International Journal of Refrigeration2011,34,12:1
6Self-Powered,Long-Durable,and Highly Selective Oil-Solid Triboelectric Nanogenerator for Energy Harvesting and Intelligent Monitoring显示文摘Triboelectric nanogenerators(TENGs)have potential to achieve energy harvesting and condition monitoring of oils,the“lifeblood”of industry.However,oil absorption on the solid surfaces is a great challenge for oil-solid TENG(O-TENG).Here,oleophobic/superamphiphobic O-TENGs are achieved via engineering of solid surface wetting properties.The designed O-TENG can generate an excellent electricity(with a charge density of 9.1μC m^(−2) and a power density of 1.23 mW m^(−2)),which is an order of magnitude higher than other O-TENGs made from polytetrafluoroethylene and polyimide.It also has a significant durability(30,000 cycles)and can power a digital thermometer for self-powered sensor applications.Further,a superhigh-sensitivity O-TENG monitoring system is successfully developed for real-time detecting particle/water contaminants in oils.The O-TENG can detect particle contaminants at least down to 0.01 wt%and water contaminants down to 100 ppm,which are much better than previous online monitoring methods(particle>0.1 wt%;water>1000 ppm).More interesting,the developed O-TENG can also distinguish water from other contaminants,which means the developed O-TENG has a highly water-selective performance.This work provides an ideal strategy for enhancing the output and durability of TENGs for oil-solid contact and opens new intelligent pathways for oil-solid energy harvesting and oil condition monitoring.Jun Zhao Di Wang Fan Zhang Jinshan Pan Per Claesson Roland Larsson Yijun Shi 2022Nano-Micro Letters2022,14,10:0
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