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8篇 您的检索式:作者名="Mameda"
    题名 作者 年代 出处 被引量
1Association between hepatic triacylglycerol accumulation induced by administering orotic aid and enhanced phosphatidate phosphohydrolase activity in rats显示文摘CHA J Y MAMEDA Y YAMAMOTO K 1998Biosci Biotechnol Biochem1998,62,3:1
2Association between Hepatic Triacylglycerol Accumulation Induced by Administering Orotic Acid and Enhanced Phosphatidate Phosphohydrolase Activity in Rats显示文摘Cha J Y Mameda Y Yamamoto K 1998Biosci Biotechnol Biochem1998,62,:1
3Association between hepatic triacylglycerol accumulation induced by administering orotic acid and enhanced phosphatidate phosphohydrolase activity in rats 显示文摘Cha J Y Mameda Y Yamamoto K 1998Biosci Biotechnol Biochem1998,62,:1
4Association between hepatic triacylglycerol accumulation induced by administering orotic acid and enhanced phosphatidate phosphohydrolase activity in rats显示文摘Cha J Y Mameda Y Yamamoto K 0,,:1
5Association between hepatic triacylglycerol accumulation induced by administering orotic aid and enhanced phosphatidate phosphohydrolase activity in rats 显示文摘Cha JY Mameda Y Yamamoto K 1998Biosci Biotechnol Biochem1998,62,:1
6Covariant spin kinetic theory I:collisionless limit显示文摘We develop a covariant kinetic theory for massive fermions in a curved spacetime and an external electromagnetic field based on quantum field theory.We derive four coupled semi-classical kinetic equations accurate to O(ℏ),which describe the transports of particle number and spin degrees of freedom.The relationship with chiral kinetic theory is discussed.As an application,we study spin polarization in the presence of finite Riemann curvature and an electromagnetic field in both local and global equilibrium states.刘玉琛 Kazuya Mameda 黄旭光 2020Chinese Physics C2020,44,9:0
7Erratum:Covariant Spin Kinetic Theory I:Collisionless Limit,[Y.-C.Liu,K.Mameda,and X.-G.Huang,Chin.Phys.C 44,094101(2020)]显示文摘After the publication of the paper,we found two incorrect signs in Eqs.(11)and(13).The correct form of Eq.刘玉琛 Kazuya Mameda 黄旭光 2021Chinese Physics C2021,45,8:0
8Bifunctional S-scheme hybrid heterojunction comprising CdS nanorods and BiOIO_(3) nanosheets for efficient solar-induced antibiotic degradation and highly-selective CO_(2) reduction显示文摘The development of a bifunctional photocatalyst that can be utilized for both energy conversion and envi-ronmental remediation is of great practical significance.In addition,an S-scheme charge transfer process can assist a photocatalyst in efficiently separating photoexcited electrons and holes while maintaining the strong reducibility and oxidizability of the former and the latter,respectively.We developed a bifunctional S-scheme hybrid photocatalyst comprising CdS nanorods and BiOIO_(3)(BIO) nanosheets for efficient antibi-otic degradation and cocatalyst-and sacrificial reagent-free CO_(2) reduction.The combination of visible-light-responsive one-dimensional(1D)CdS and UV-light-responsive 2D BIO resulted in a CdS/BIO hybrid photocatalyst with effective 1D/2D(line)interfacial contact and a broadened optical absorption range.Notably,the CdS/BIO hybrid exhibited exceptional diclofenac degradation and mineralization as well as outstanding CO_(2) reduction activity for CO production,with 95.4%CO selectivity over H_(2)production.The exceptional performance of the hybrid catalyst is primarily attributed to the accelerated photoexcited charge transfer caused by the 1D/2D line interfacial contact and the high charge separation and strong redox power of the separated charges,both of which stem from the effective S-scheme charge transfer process.In addition,photocorrosion of CdS was substantially mitigated,resulting in the high photocat-alytic performance of the hybrid catalyst even after repeated test runs.This study provides insight into the rational design of bifunctional S-scheme hybrid photocatalysts for CO_(2) reduction and pollutant degra-dation.Dong-Eun Lee Naresh Mameda Kasala Prabhakar Reddy B.Moses Abraham Wan-Kuen Jo Surendar Tonda 2023Journal of Materials Science & Technology2023,,30:0
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