-
-
封面介绍Ye, Jianliang & Huang, Peiqiang et al. on page 476-483: This cover highlights the third approach for the direct, catalytic asymmetric reductive transformation of amides. The one-pot protocol is enabled by an aqueous Noyori-type catalytic asymmetric transfer hydrogenation (CATH) of the in situ generated dehydracyclization intermediates from N-phenethylbenzamide derivatives via activation with Tf2O/2-F-pyridine. A variety of tetrahydroisoquinoline (THIQ) derivatives, including several natural products, were synthesized in high yields and in excellent enantioselectivities. -
封面介绍Lang, Chao & Ying, Yi-Lun et al. on page 459-464: This article reports a PEG-b-PPhMA polymer membrane-supported Aerolysin nanopore sensing platform enables stable detection of hydrophobic molecules in organic-aqueous systems. This platform extends biological nanopore sensing beyond conventional phospholipid bilayers and aqueous environments, thereby expanding the applicability of nanopore technology to hydrophobic organic molecules. See the full article for details. -
封面介绍Jin, Weiwei et al. on page 498-520: Like a tree branching out through electrochemical dehydrogenative coupling, this cover illustrates the sustainable construction of heteroatom-heteroatom bonds—where each new branch represents a coupled product and the leaves symbolize H2 as the sole byproduct, growing a forest of green synthetic strategies. -
封面介绍Wang, Chuanjun & Wang, Guoqiang et al. on page 490-497: This study presents nickel-iron bimetallic phosphide supported on corn-straw-derived carbon as efficient electrocatalyst for nitrite reduction to ammonia. The incorporation of phosphorus modulates the electronic structure of Ni and Fe, optimizes the adsorption of *H and nitrogen intermediates to boost nitrite-to-ammonia performance. This approach successfully tackles the dual challenges of waste biomass utilization and nitrite pollution remediation.
-
-
本期栏目
目录
研究通讯
研究论文
综述