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Asymmetric orbital hybridization in Zn-doped antiperovskite Cu_(1-x)Zn_(x)NMn_(3)enables highly efficient electrocatalytic hydrogen production
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作者 Yuxiang Yan Yuxin Cao +9 位作者 Zhichao wang ka wang Hengdong Ren Shaoqi Zhang Yi wang Jian Chen Yong Zhou Lizhe Liu Jun Dai Xinglong Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期304-312,I0008,共10页
Rational design of efficient and robust earth-abundant alkaline hydrogen evolution reaction(HER)catalysts is a key factor for developing energy conversion technologies.Currently,antiperovskite nitride CuNMn_(3)has gar... Rational design of efficient and robust earth-abundant alkaline hydrogen evolution reaction(HER)catalysts is a key factor for developing energy conversion technologies.Currently,antiperovskite nitride CuNMn_(3)has garnered significant interest due to its remarkable properties such as negative/zero thermal expansion and magnetocaloric effects.However,when utilized as hydrogen evolution catalysts,it encounters large challenge resulting from excessively strong/weak interactions with adsorbed H on Mn/Cu active sites,which leads to low HER activity.In this study,we introduce an asymmetric orbital hybridization strategy in Zn-doped Cu_(1-x)Zn_(x)NMn_(3)by leveraging the localization of Zn electronic states to reconfigure the electronic structures of Cu and Mn,thereby reducing the energy barrier for water dissociation and optimizing Cu and Mn active sites for hydrogen adsorption and H_(2)production.Electrochemical evaluations reveal that Cu_(0.85)Zn_(0.15)NMn_(3)with x=0.15 demonstrates exceptional electrocatalytic activity in alkaline electrolytes.A low overpotential of 52 mV at 10 mA cm^(-2)and outstanding stability over a 150-h test period are achieved,surpassing commercial Pt/C.This research offers a novel strategy for enhancing HER performance by modulating asymmetric hybridization of electron orbitals between multiple metal atoms within a material structure. 展开更多
关键词 Cu_(1-x)ZnxNMn_(3) Asymmetric orbital hybridization Hydrogen adsorption Hydrogen production
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Effect of ulinastatin combined rivaroxaban on deep vein thrombosis in major orthopedic surgery 被引量:17
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作者 Xi Yu Yi Tian +3 位作者 ka wang Ying-Lin wang Guo-Yi Lv Guo-Gang Tian 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2014年第11期918-921,共4页
Objective:To explore the effect of ulinastatin(UTI) continuous infusion combined Rivaroxaban on the deep vein thrombosis in patients undergoing major orthopedic surgery.Methods:Forty-five patients undergoing major ort... Objective:To explore the effect of ulinastatin(UTI) continuous infusion combined Rivaroxaban on the deep vein thrombosis in patients undergoing major orthopedic surgery.Methods:Forty-five patients undergoing major orthopedic surgery were randomly divided into three groups:ulinastatin continuous infusion(Uc) group,ulinastatin single injection(Us) group and control(C) group.All patients received patient-controlled intravenous analgesia(PCIA) after operation,and took Rivaroxaban 10 mg orally 12 hours after operation.Ulinastatin(5 000 U/kg)was given intravenously to both Uc and Us groups preoperatively.Group C was given isometric normal saline,group Uc was pumped UTI continuous intravenously at the end of surgery(10 000U/kg) to 48 hours through PCIA pump.The values of hematocrit(HCT),thrombomodulin(TM),Interleukin(IL-6),thrombin-antithrombin complex(TAT),D-Dimer(D-D) were normally tested before surgery(T1),at the end of the surgery(T2),12 hours(T3).24 hours(T4) and 48 hours(T5)after surgery.Results:Compared with T1,there was an upward tendency in TM,IL-6,TAT,and D-D after operation in group C group(P <0.05).The values of them were significandy increased from nearly 24-hour after surgery in Us group(P<0.05).In group Uc.there were no significant changes in these indices after operation(P>0.05).Conclusions:During the perioperative period,ulinastatin continuous infusion combined Rivaroxaban can correct blood hypercoagulability through different approaches in patients undergoing major orthopedic surgery. 展开更多
关键词 ULINASTATIN RIVAROXABAN DVT ORTHOPEDIC SURGERY
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