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1.
The cover picture shows an efficient one‐pot condensation of maleimide derivatives in the presence of acetic acid and water to afford a series of benzene triimides (BTIs). The structure, physicochemical properties and electrochemistry behavior of BTIs were systematically investigated. Owing to the planar structure and unique electron‐deficient nature, BTIs can self‐assemble into different motifs. More details are discussed by Wang et al. on page 684–688.

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2.
The cover picture shows a highly enantioselective organocatalytic protonation of monofluorinated silyl enol ethers to α‐secondary α‐fluoroketones using water as proton source. Notably, in the presence of D2O and MeOD, the facile access of chiral α‐deuterated α‐fluoroketones in excellent enantioselectivity is achieved. More details are discussed by Zhou et al. on page 799–806.

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3.
Back Cover     
《中国化学》2020,38(10):1212-1212
The back cover picture shows a supramolecularly‐controlled topochemical reaction of conjugated dienes under irradiation in homogeneous system. Using this method, the cyclooctadiene‐cored derivatives are synthesized very efficiently. Moreover, the cyclooctadiene tetraimidazolium derivatives can be applied as fluorescent chemosensors for thymine in aqueous solution at physiological pH (7.4). More details are discussed in the article by Han et al. on page 1040—1044.

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4.
The cover picture shows a typical building within the Campus of Xiamen University displaying Chen Jiageng (Tan Kah Kee)'s style. Just like many beautiful buildings designed and constructed by human, Nature “designs and constructs” a huge number of useful molecules with fascinating structures called natural products. Many natural products possess a fused six or seven‐membered carbocyclic unity. On page 315–322, the Huang's group disclosed a three‐step “[2+n]” annulation method for the construction of fused six and seven‐membered carbocyclic enimines and enones. The method starts from simple cyclic ketones and terminal olefinic amides, and relies on both the Suzuki coupling reaction and the olefin‐amide based Friedel‐Crafts type acylating reaction, a method developed by Huang and coworkers.

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5.
The cover picture shows an approach toward less‐trace SpyTag‐SpyCatcher ligation. A proteolytic recognition sequence has been engineered into the second loop of SpyCatcher to produce SpyCatcherDDDDK variant. The reaction between SpyTag and SpyCatcherDDDDK is highly efficient both in vivo and in vitro, producing a stable covalent complex. The complex can be further cleaved at the second loop by enterokinase, resulting in only a small scar after ligation. This protocol adds to the expanding toolbox of genetically‐encoded peptide‐protein chemistry for protein topology engineering. More details are discussed in the article by Zhang et al. on page 113–118.

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6.
The inside cover picture shows an electrochemical oxidative Csp3‐H/S‐H activation with hydrogen evolution for the synthesis of tetrasubstituted olefins. This method features very high atom economy, besides hydrogen gas, under the base‐free, transition met‐al‐free, and oxidants‐free conditions, no other by‐products were generated. More details are discussed in the article by Lei et al. on page 547–551.

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7.
The cover picture shows a synergistically directed assembly route towards novel multi‐component coordination architectures driven by aromatic donor‐acceptor and coordination interactions. The huge structural discrepancies between coronene donor present and absent experiments clearly prove the significance of aromatic donor‐accepter pairs and their inherent cooperation mechanism in these assembly processes. More details are discussed by Bu et al. on page 871–877.

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8.
Back Cover     
《中国化学》2020,38(2):224-224
The back cover picture shows an efficient organic ligand‐free heterogeneous catalytic system for hydroformylation of olefins with simple Rh particles as the catalyst. The Rh black catalyst showed good catalytic activity for a broad substrate scope including the aliphatic and aromatic olefins, affording the desired aldehydes in good yields. The catalyst could be reused several times without loss of activity under identical reaction conditions, and the Rh leaching was negligible after each cycle. More details are discussed in the article by Shi et al. on page 139 143.

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9.
The cover picture shows that sequential 1,1‐dihydrosilylation of terminal aliphatic alkynes with primary silanes enabled by one earth‐abundant cobalt catalyst has been developed. This protocol is operationally simple using readily available aliphatic alkynes, including simple acetylene and complex drug derivative, for efficient access to valuable gem‐bis(dihydrosilyl)alkanes in highly regioselective and atom‐economic manners. Corresponding asymmetric transformations are achieved with excellent enantioselectivities. More details are discussed in the article by Lu et al. on page 457–461.

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10.
Back Cover     
《中国化学》2020,38(9):1024-1024
The development of azobenzene‐containing polymers (azopolymers) opens up an avenue for controlling their properties and functions with light. These polymers show shape changes and mechanical responses under the stimulation of light via photoisomerization of azobenzene groups. Herein, this report focuses on the growing research on moving polymers via photoisomerization, including their moving mechanisms and various applications. More details are discussed in the article by Wu et al. on page 1019—1022.

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11.
《中国化学》2023,41(3):250-250
The alkoxy radicals derived from cyclic hemiacetals are generated through visible-light-induced electron transfer with NaI and Ph3P as the catalyst. Subsequent β-scission generates carbon-centered radicals, which are trapped by cinnamic acids, aryl alkenes, vinylboronic acid and silyl enol ether to deliver the corresponding C—C bond forming products. More details are discussed in the article by Wang et al. on page 259–264.

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12.
《中国化学》2022,40(1):2-2
The cover picture shows the molecular modeling software package SPONGE (Simulation Package tOward Next GEneration molecular modeling). SPONGE is designed to be efficient and highly modulated. Especially, advanced machine learning algorithms can be easily merged into MD simulations by using SPONGE. All these features increase the power of SPONGE for modeling and simulation of complex chemical and biological systems. More details are given in the article by Gao et al. on page 160–168.

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13.
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《中国化学》2022,40(1):1-1
This cover picture shows a heterogeneous photocatalytic decarboxylative coupling reaction of imidazo-fused heterocycles with N-arylglycines. In this reaction, eco-friendly carbon nitride nanosheet is found to be an efficient and recyclable photocatalyst, which could be recovered and reused at least 7 times. More details are given in the article by Yu et al. on page 97–103.

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14.
Inside Cover     
《中国化学》2021,39(1):2-2
Chiral structure is very common in nature. especially, the chiral materials could rotate the polarized light. Light‐matter interaction is very important for process of nature. Inorganic nanomaterials with unique chiral configuration and suitable size have shown exquisitely chiral recognition and selective catalysis function, similar to natural restriction endonuclease. There are no unbridgeable gulf between organic molecules and inorganic materials. The physical and chemical mechanisms involved in chiral phenomenon are very helpful to exploit novel application of chiral materials in biological sensing, imaging, gene editing and information communications. More details are discussed in the article by Kuang et al. on page 25—31.

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15.
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《中国化学》2020,38(2):113-113
The cover picture shows a critical review on the organic reactions catalyzed by dinucleating complexes via metal‐metal cooperation. The reaction modes for the catalysis involving late transition metals are including the bimetallic co‐activation of single molecules and dual‐activation of two molecules. More details including the pathways of the metal‐metal cooperation are discussed by Zeng et al. on page 185—201.

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16.
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《中国化学》2020,38(7):673-673
The cover picture shows the construction of interfacial inorganic nanostructures and their application in electrocatalysis. In this review, we begin with the controllable synthesis of three classic configurations on interfacial nanostructured materials by briefly introducing some recent advances in interfacial engineering. More importantly, we concentrate on several typical model studies of inorganic heterogeneous nanostructured electrocatalysts for different energy conversion reactions, due to the special interface and synergistic effect. More details are discussed in the article by Xi et al. on page 772–782.

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17.
The inside cover picture shows a palladium‐catalyzed asymmetric dihydroxylation of 1,3‐dienes with catechols utilizing chiral pyridinebis(oxazoline) ligand. The reaction is proposed to proceed via a cascade Wacker‐type hydroxypalladation/asymmetric allylation process. This methodology provides a direct and straightforward synthesis to prepare chiral 2‐substituted 1,4‐benzodioxane motifs in moderate to good yield and enantioselectivity from readily available starting materials. More details are discussed in the article by Gong et al. on page 226–232.

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18.
The love story of “Niu Lang and Zhi Nv” is one of the most famous tales in China. The couple separated by the Tianhe river were able to meet each other once a year with the help of numerous magpies who built a colorful bridge across the river. With this backdrop, Y.‐F. Han et al. present in their article a metal‐carbene‐templated photochemistry in solution. Assisted by the bridge of carbene‐metal‐carbene units, two olefin substrates can reach each other closely, leading to photodimerization and the formation of cyclobutane derivatives. More details are discussed in the article by Han et al. on page 1147–1152.

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19.
Cover Image © Promotive/Shutterstock

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20.
Inside Cover     
《中国化学》2020,38(2):114-114
The bifunctional roles of CH3COO (complexation effect and decreasing temperature of PVP complete decomposition) are utilized to synthesize electrospun LaCoO3 perovskites at a low‐temperature 400 °C. The obtained material can be applied in the catalytic oxidation of volatile organic compounds, like stable propane. More details are discussed in the article by Luo and Qian et al. on page 144 150.

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