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1.
The inside cover picture shows  in situ construction of highly emissive Pt(II) metallacycles upon irradiation. The self‐assembled diarylethene‐containing metallacycles can realize supramolecular transform from the open‐ring isomers to their closed‐ring ones under UV irradiation. Moreover, the closed‐ring isomers featured a relatively high fluorescence quantum yield. This property of “turn‐on” fluorescence switching provides a new method to construct highly emissive supramolecular fluorescent materials by light stimulus. More details are discussed in the article by Yang et al. on page 323–329.

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2.
Inside Cover     
《中国化学》2020,38(8):794-794
Interfacial engineering is expected to be a feasible strategy to improve the charge transport properties of the hole transport layer, which is of crucial importance to boost the device performance of organic solar cells. In this study, the doping of F4‐TCNQ and N719 dye in the hole transport layer with and without integrating a graphene quantum‐dots layer has been explored in non‐fullerene acceptor‐based organic solar cells. More details are discussed in the article by Feng et al. on page 817–822.

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3.
Inside Cover     
《中国化学》2020,38(10):1026-1026
This review summarizes key development of N‐heterocyclic carbene organic catalysis, with a particular focus on the basic activation and reaction modes enabled by NHCs. More details are discussed in the article by Chi et al. on page 1167—1202.

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4.
The inside cover picture shows the hydrogen transfer process of the production of acetic acid from ethanol and water mixture catalyzed by iridium catalyst owning bpyO ligand. A DFT mechanistic study indicates that the cooperation of the iridium center and bpyO ligand plays an important role in the catalytic activity, and that the hydrogen release process from the iridium center is the rate‐determining step. More details are discussed in the article by Lei et al. on page 883–886.

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5.
The back cover picture shows the first LA‐catalyzed [3+2]IMCC of GDA‐epoxides with carbon‐carbon double bonds. This provides an efficient and general strategy for construction of bridged oxa‐[n.2.1] skeletons. A novel SN‐like mechanism through a carbon‐carbon bond cleavage of epoxide ring has been proposed. The colorful fireworks in the picture imply the generation of skeletal diversity from the epoxide‐diene, and express a dedication to the 100th Anniversary of Nankai University as well. More details are discussed in the article by Wang et al. on page 695–699.

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6.
Inside Cover     
《中国化学》2020,38(3):226-226
The inside cover picture shows a simple and efficient method for the synthesis of chiral β‐lactams via Pd(II)‐catalyzed intramolecular enantioselective amination of methylene C(sp3)?H bonds. The magical combination of 2‐pyridinylisopropyl (PIP) auxiliary and 3,3’‐substituted BINOL‐type ligands proves to be a general solution for the asymmetric functionalization of unbiased methylene C(sp3)?H bonds. More details are discussed by Shi et al. on page 242246.

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7.
Cover Picture     
《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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8.
《中国化学》2023,41(2):134-134
This cover picture describes a novel palladium-catalyzed three-component tandem cyclization reaction between two molecular haloalkynes and one molecular N-alkylaniline for the efficient assembly of 3-halopyrroles. This protocol involves the sequential conversions of two carbon-carbon triple bonds and one carbon-halogen bond in two molecular haloalkynes and features convenient operation, high chemo- and regioselectivites, and good functional group tolerance. In addition, different derivatizations of the newly formed bromopyrroles afford diverse functionalized pyrrole derivatives, demonstrating the practicability of this method. More details are discussed in the article by Wu et al. on page 181—187.

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9.
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《中国化学》2020,38(5):425-425
In this paper, we design a new interrupted AST‐type zeolitic imidazolate framework with cub and interrupted ast cages, which exhibits permanent porosity, high hydrophobicity and strong solid‐state photoluminescent properties. More details are discussed in the article by Wang & Zhang et al. on page 449–452.

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10.
The cover picture shows Schilancidilactones A, B and Schilancitrilactones A, B, C all belong to schinortriterpenoid. Preliminary bioassay shows some of them possess fascinating bioactivities, such as antitumor, antihepatitis, and anti‐HIV‐1 activities. The total synthesis of Schilancidilactones A, B and Schilancitrilactones A, B, C has been accomplished from the common intermediates for the first time by Tang group. An intramolecular radical cyclization, late‐stage halogenation and AIBN‐mediated or Ni‐catalyzed intermolecular radical cross coupling reaction were employed as the key steps. More details are discussed in the article by Tang et al. on page 255–268.

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11.
Back Cover     
《中国化学》2021,39(1):208-208
5‐Bromofuran‐2‐carboxylates were conducted in a palladium‐catalyzed reductive homocoupling reactions in the presence of alcohols as the reductant to afford [2,2’]bifuran‐5,5’‐dicarboxylic acid esters, which are essential monomers of poly(ethylene bifuranoate), serving as an green and versatile alternative polymer for traditional poly(ethylene terephthalate). More details are discussed in the article by Yin and Jiang et al. on page 62—68.

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12.
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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13.
《中国化学》2023,41(1):2-2
The cover picture shows a facile synthetic methodology towards S-fused multi-membered polycyclic heterocycles containing five-membered thiophene, six-membered thiopyran, and seven-membered thiepine. A construction strategy for thermally stable thiepine derivatives is thus established. More details are discussed in the article by Zhou et al. on page 13—20.

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14.
Inside Cover     
《中国化学》2020,38(9):902-902
The function of the type II peptidyl carrier protein (PCP) ColA1a in collismycin (COL) biosynthesis was characterized in this study. ColA1a was involved in the selection and loading of picolinic acid (PA), instead of normal amino acid substrates, as the origin of ring B in COLs. The 2.1 Å crystal structure of ColA1a was solved. Primary and tertiary structural comparison of ColA1a with other PCPs revealed the structural basis for their typical α‐helical bundles. More details are discussed in the article by Ma et al. on page 963—969.

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15.
The back cover picture shows an electrochemical strategy for the borylation of aryl iodides via a radical pathway using current as a driving force. This method features mild reaction conditions, good functional groups tolerance, and prompt reaction time. EPR, CV and DPV experiments verified the formation of aryl radicals in this electrochemical borylation reaction, and the current plays an important role in the generation of radical intermediate. More details are discussed in the article by Mo et al. on page 347–351.

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16.
Back Cover     
《中国化学》2020,38(7):792-792
Two‐dimensional (2D) transition metal dichalcogenides (TMDs) usually have poly‐phases, such as 2H, 3R and 1T. Controlling the structure phase of 2D TMDs is the key for engineering the physical and chemical properties of the materials and hence is vital to the applications. Many approaches, including doping/intercalation, alloying, defects, strain, electric field and so on, have been developed to tune the thermodynamic stability of the different phases of TMDs and then phase selective synthesis or controlled phase conversion has been achieved. More details are discussed in the article by Xie et al. on page 753–760.

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17.
Inside Cover     
《中国化学》2020,38(6):534-534
Reactions of homoleptic rare‐earth aryloxides based Lewis pairs with organic azides were investigated, which gave either bimetallic rare‐earth azide complexes in an end‐to‐end fashion or FLP‐type 1,1‐addition product depending on the nature of azide reagents. The current reaction was found to be applicable for Lewis acids across the full range of rare‐earth metals. More details are discussed in the article by Xu et al. on page 559—564.

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18.
Cover Picture     
《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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19.
《中国化学》2020,38(10):1211-1211
The inside back cover picture shows the controllable skeleton rearrangement of 3‐substituted cyclobutanones under basic conditions. In this paper, a series of 3‐substituted cyclobutanones with different Z group underwent skeleton rearrangement with the treatment of K3PO4 and 18‐crown‐6 ether. Various lactones, lactams and acids were afforded in this concise reaction. More interestingly, an eight‐membered ring was produced with pentaflurophenyl group as a good leaving group. More details are discussed in the article by Lu et al. on page 1103—1106.

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20.
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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