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【科北浙南清开厦交复武】近10年高校在JACS发表论文数量排名和趋势分析

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发表于 2023-11-13 15:48:47 | 显示全部楼层
本帖最后由 明月高悬 于 2023-11-13 16:08 编辑
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5 y9 f$ a6 y# e' _2022年
2 P1 O# j/ i$ o; k1 ~  F' C  X# Y浙江大学4 F  m( a! I- \9 b
[1]        Janus Dione-Based Conjugated Covalent Organic Frameworks with High Conductivity as Superior Cathode Materials
  ~/ q+ \6 ^2 J; ~* j9 @6 Q[2]        Pillararene-Based Variable Stoichiometry Co-Crystallization: A Versatile Approach to Diversified Solid-State Superstructures; L. w; g, I1 C; T  F/ E8 y! }
[3]        Highly Efficient Separation of C8 Aromatic Isomers by Rationally Designed Nonaromatic Metal-Organic Frameworks
+ L3 F  G2 K5 {9 t[4]        Sequence-Reversible Construction of Oxygen-Rich Block Copolymers from Epoxide Mixtures by Organoboron Catalysts" A1 j, y  M1 R  T* _
[5]        Three-Dimensional Covalent Organic Frameworks with she Topology5 j/ c& ^( g, @2 K
[6]        Cobalt-Catalyzed Enantioconvergent Hydrogenation of Minimally Functionalized Isomeric Olefins; X$ m6 ~& A3 G. i
[7]        Synthesis of Weakly Confined, Cube-Shaped, and Monodisperse Cadmium Chalcogenide Nanocrystals with Unexpected Photophysical Properties
9 S  Y$ y. Q5 H" ^; v. P[8]        Coking-Resistant Polyethylene Upcycling Modulated by Zeolite Micropore Diffusion
7 E8 {" E' c2 _6 V( ]$ U( x[9]        Tunable Confined Aliphatic Pore Environment in Robust Metal-Organic Frameworks for Efficient Separation of Gases with a Similar Structure
( ]( D! t) O  G& ]3 S[10]        Aliphatic Polyesters with White-Light Clusteroluminescence
3 Z8 {) ~. _% e[11]        Potential Difference-Modulated Synthesis of Self-Standing Covalent Organic Framework Membranes at Liquid/Liquid Interfaces
2 c  S0 [8 ]0 J$ D[12]        Epitaxial Integration of Multiple CdSe Quantum Dots in a Colloidal CdS Nanoplatele
9 G+ r( z, ^& r4 S5 n[13]        Manipulating Cation-π Interactions with Genetically Encoded Tryptophan Derivatives- Z9 K* E( G* }) X: V# m
[14]        Design of a Small Organic Template for the Synthesis of Self-Pillared Pentasil Zeolite Nanosheets
7 \9 |. N7 S2 F4 n/ z2 B[15]        Spatiotemporal Activation of Protein O-GlcNAcylation in Living Cells- B* Y! `1 K" n4 i* T3 y% Q# f
[16]        Designing Ultra-flat Bands in Twisted Bilayer Materials at Large Twist Angles: Theory and Application to Two-Dimensional Indium Selenide: B( g) f, n9 `5 J% o3 v
[17]        Robust and Radiation-Resistant Hofmann-Type Metal-Organic Frameworks for Record Xenon/Krypton Separation
# G, f6 {! q/ M1 Q% ?1 `[18]        Piperazine-Linked Covalent Organic Frameworks with High Electrical Conductivity9 v  w, P& m' k/ @8 t! Y& S
[19]        Divergent Total Syntheses of (-)-Crinipellins Facilitated by a HAT-Initiated Dowd-Beckwith Rearrangement& g: r! F. v, m6 t
[20]        Immobilization of Lewis Basic Sites into a Stable Ethane-Selective MOF Enabling One-Step Separation of Ethylene from a Ternary Mixture6 c: E, h* a* U3 m/ G6 m
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1 _9 r" ?& k2 l$ }# p复旦大学; g4 h6 O) a# @* ?. }
[1]        Stereoselective Construction of Chiral Linear [3]Catenanes and [2]Catenanes
* g/ D% u2 }+ o( I8 @2 U" O[2]        Configuration-Specific Antibody for Bacterial Heptosylation: An Antiadhesion Therapeutic Strategy" F) Q" r$ M8 E& `& E& X7 G5 g8 K
[3]        Borenium-Ion-Catalyzed C-H Borylation of Arenes
0 H: q  |+ j1 E$ \5 m" j  [[4]        Enantioselective Synthesis of Inherently Chiral Calix[4]arenes via Intramolecular C-H
; u% Z9 y( m# P* }5 u9 n+ b- l0 m$ ^( i[5]        Diazophosphane HPN2
  m; }, _& p1 ~+ x[6]        Synthesis of Carborane-Backbone Metallacycles for Highly Selective Capture of n-Pentane% k4 s4 F* t- ~% x3 T& z
[7]        Alkyl-Substituted N,S-Embedded Heterocycloarenes with a Planar Aromatic Configuration for Hosting Fullerenes and Organic Field-Effect Transistors4 m, @* k  I: u6 A  ?+ j/ w
[8]        A Two-Dimensional van der Waals Heterostructure with Isolated Electron-Deficient Cobalt Sites toward High-Efficiency CO2 Electroreduction3 [  f4 d5 i) K! M: h
[9]        Polymethine Molecular Platform for Ratiometric Fluorescent Probes in the Second near-Infrared Window
- |+ K1 y6 a7 J' S" `& B[10]        Photoinduced Ion-Pair Inner-Sphere Electron Transfer-Reversible Addition-Fragmentation Chain Transfer Polymerization
: z6 R' i- ?  J3 T( E- X[11]        Chloride Oxidation by One- or Two-Photon Excitation of N-Phenylphenothiazine/ y9 u# s7 o3 Z  h6 l
[12]        Precise Assembly of Proteins and Carbohydrates for Next-Generation Biomaterials
: D6 u. l  T# u# w0 f4 v/ e; w[13]        Pd/Ming-Phos-Catalyzed Asymmetric Three-Component Arylsilylation of N-Sulfonylhydrazones: Enantioselective Synthesis of gem-Diarylmethine Silanes1 ~: w7 x5 g' e2 Q! ]
[14]        Programmable Assembly of Amphiphilic DNA through Controlled Cholesterol Stacking* w  ^, V/ ^. T/ R2 k
[15]        Anisotropic Self-Assembly of Asymmetric Mesoporous Hemispheres with Tunable Pore Structures at Liquid-Liquid Interfaces
. V/ b$ t" E1 F) x8 N2 T$ M; l4 N. A[16]        Two-Dimensional Organic-Inorganic Room-Temperature Multiferroics  j8 X2 p6 y' G( h
[17]        Methanol Synthesis from CO2/CO Mixture on Cu-Zn Catalysts from Microkinetics-Guided Machine Learning Pathway Search; G: ]# i$ T- A9 R  I+ }
[18]        (n-Bu)4NBr-Promoted N2 Splitting to Molybdenum Nitride
& ?/ \+ {+ J: b, C' \: {[19]        Catalytic Asymmetric Axially Chiral Allenyl C-P Bond Formation, ]- B7 E( h4 \( }
[20]        Electrochemical Detection of a Few Copies of Unamplified SARS-CoV-2 Nucleic Acids by a Self-Actuated Molecular System# P( S8 z: W& P8 A$ o
[21]        Super-Assembled Chiral Mesostructured Heteromembranes for Smart and Sensitive Couple-Accelerated Enantioseparation
7 e  e  T, U# J- a[22]        Constructing Unique Mesoporous Carbon Superstructures via Monomicelle Interface Confined Assembly9 u0 _/ a0 |) y: c
[23]        Design Rules of Hydrogen-Bonded Organic Frameworks with High Chemical and Thermal Stabilities4 Y/ j: m4 v' y& H" @6 e- w1 p
[24]        Self-Expanding Molten Salt-Driven Growth of Patterned Transition-Metal Dichalcogenide Crystals
0 P8 M) O/ _  W2 R[25]        Soft Patch Interface-Oriented Superassembly of Complex Hollow Nanoarchitectures for Smart Dual-Responsive Nanospacecrafts
& l, x; K8 A- [4 F2 R2 ^1 N[26]        Visible Light Generation of a Microsecond Long-Lived Potent Reducing Agent8 @2 i4 k7 X( _$ ^+ G6 e$ v
[27]        Highly Selective Separation of Benzene and Cyclohexane in a Spatially Confined Carborane Metallacage
. y' j6 H" v; p[28]        Gradient Hierarchically Porous Structure for Rapid Capillary-AssistedCatalysis6 @3 r- p" M2 R3 [& S% U% D
[29]        Searching for Band-Dispersive and Defect-Tolerant Semiconductors from Element Substitution in Topological Materials
7 e7 m0 E2 `6 I) s[30]        Enzyme-Based Mesoporous Nanomotors with Near-Infrared Optical Brakes% C9 }) i# ?+ o/ Z: Q  K$ r
[31]        Stereoselective Self-Assembly of Complex Chiral Radial [5]Catenanes Using Half-Sandwich Rhodium/Iridium Building Blocks$ \8 L! K+ t* v* j1 V1 [% M! `+ ^3 R
[32]        Self-Assembly of Ir-Based Nanosheets with Ordered Interlayer Space for Enhanced Electrocatalytic Water Oxidation
% ^$ V! ^- V1 u/ G! F& C! e' }[33]        Kinetics-Controlled Super-Assembly of Asymmetric Porous and Hollow Carbon Nanoparticles as Light-Sensitive Smart Nanovehicles* f$ y" k! Q4 N5 S/ U
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上海交大- @' d$ _3 @: D
[1]        Insights into the Correlation of Microscopic Motions of [c2]Daisy Chains with Macroscopic Mechanical Performance for Mechanically Interlocked Networks
" c2 Q1 v/ _! R* ^" k+ F' d: z[2]        Rh-Catalyzed Sequential Asymmetric Hydrogenations of 3-Amino-4-Chromones Via an Unusual Dynamic Kinetic Resolution Process
9 N3 T% V( G2 q[3]        Porous Polymer Cubosomes with Ordered Single Primitive Bicontinuous Architecture and Their Sodium-Iodine Batteries
+ U) c% U4 E- i[4]        Mechanically Interlocked Aerogels with Densely Rotaxanated Backbones8 T) O% n  z0 F. |* `3 R
[5]        Scaling Up Multi-bit DNA Full Adder Circuits with Minimal Strand Displacement Reactions
2 E$ h0 H: f2 a- U/ S/ d- L8 E  H[6]        2D Covalent Organic Frameworks with cem Topology
! }6 Y4 Z+ z8 c; R% J& m[7]        Synthesis of Liquid Gallium@Reduced Graphene Oxide Core-Shell Nanoparticles with Enhanced Photoacoustic and Photothermal Performance
% C. Q( R/ c, U& D7 ~3 B[8]        Single-Stranded DNA-Encoded Gold Nanoparticle Clusters asProgrammable Enzyme Equivalents
* [' G& R0 o* h- ~$ u. F[9]        "Self-Adaptive"Coassembly of Colloidal"Saturn-like"Host-GuestComplexes Enabled by Toroidal Micellar Rubber Bands1 Q2 r4 I) H1 ^* `3 W& A4 w
[10]        Boosting Mass Exchange between Pd/NC and MoC/NC Dual Junctions via Electron Exchange for Cascade CO2 Fixation
2 t1 `$ b& p0 Z! w[11]        Short Oligonucleotides Facilitate Co-transcriptional Labeling of RNA at Specific Positions
7 b  U. c& g" Q* t$ c/ b6 {[12]        Synthesis of Vinylene-Linked Covalent Organic Frameworks by Monomer Self-Catalyzed Activation of Knoevenagel Condensation' ?- ~. f! {1 @' ~# U
[13]        Creating Optimal Pockets in a Clathrochelate-Based Metal-Organic Framework for Gas Adsorption and Separation: Experimental and Computational Studies% e0 X' P8 N5 v' x" y8 c7 j5 \2 A
[14]        Rh-Catalyzed Regio- and Enantioselective Allylic Phosphinylation; L3 S. M2 \* h- [
[15]        Chiral Selenide/Achiral Sulfonic Acid Cocatalyzed Atroposelective Sulfenylation of Biaryl Phenols via a Desymmetrization/Kinetic Resolution Sequence
( d) n- h; s9 \. X0 D2 d( i[16]        Leveraging Chiral Zr(IV)-Based Metal-Organic Frameworks To Elucidate Catalytically Active Rh Species in Asymmetric Hydrogenation Reactions7 Z4 R' D. f, z) v& P; I( e
[17]        Near-Infrared Light-Excited Reactive Oxygen Species Generation by Thulium Oxide Nanoparticles* ?( s5 R1 j! W. L2 K- G
[18]        Aptamers Entirely Built from Therapeutic Nucleoside Analogues for Targeted Cancer Therapy6 L; j4 }1 Q! _* W/ G
[19]        Enantioselective Deaminative Alkylation of Amino Acid Derivatives with Unactivated Olefins
4 p# Z4 k& I, i& @[20]        Spontaneous Resolution of Racemic Cage-Catenanes via Diastereomeric Enrichment at the Molecular Level and Subsequent Narcissistic Self-Sorting at the Supramolecular Level, A' O4 Z1 b; [
[21]        Water Sorption Evolution Enabled by Reticular Construction of Zirconium Metal-Organic Frameworks Based on a Unique [2.2]Paracyclophane Scaffold8 _7 f) N: W/ y& M
[22]        Quinoline-Based Photolabile Protection Strategy Facilitates Efficient Protein Assembly" Z: ~; |0 y, T4 _4 t' \0 s
[23]        Are Highly Stable Covalent Organic Frameworks the Key to Universal Chiral Stationary Phases for Liquid and Gas Chromatographic Separations?
  @* F: P; N  I! P6 ^3 Z8 t, Z0 Z[24]        Mechanically Interlocked Vitrimers2 q& v! Q* l  P: G4 ^

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南京大学# O$ p# a( g4 i- Y  A( `1 W' `
[1]        Unveiling the Surface Structure of ZnO Nanorods and H2 Activation Mechanisms with 17O NMR Spectroscopy( ^& S, ]  U3 g) i3 I1 w  @
[2]        Ligand Relay Catalysis Enables Asymmetric Migratory Reductive Acylation of Olefins or Alkyl Halides
- B: m$ y6 n3 J$ _& c[3]        Combined Cellular Thermometry Reveals That Salmonella typhimurium Warms Macrophages by Inducing a Pyroptosis-like Phenotype% s' d: k/ h, T5 W- z
[4]        Electrochemical Molecule Trap-Based Sensing of Low-Abundance Enzymes in One Living Cell
- t9 s1 z9 ~1 f' Y[5]        Identification of Single Amino Acid Chiral and Positional Isomers Using an Electrostatically Asymmetric Nanopore, X6 g0 _" M6 j
[6]        Nanopore Identification of Alditol Epimers and Their Application in Rapid Analysis of Alditol-Containing Drinks and Healthcare Products  a1 l: p1 T# y. [: ]+ c' m9 P
[7]        Decrypting Material Performance by Wide-field Femtosecond Interferometric Imaging of Energy Carrier Evolution( Y" ?* F5 r! X6 U5 U) r
[8]        Photoexcited Chiral Copper Complex-Mediated Alkene E → Z Isomerization Enables Kinetic Resolution
7 ^8 c1 o) a9 ]# |6 G[9]        Mechanochemical Lithography% U' @) @! P1 G* }
[10]        The Lewis Acid Induced Formation of a Stable Diradical with an Intramolecular Ion Pairing State& X: r* @& l# P
[11]        Redox-Active Covalent Organic Frameworks with Nickel-Bis(dithiolene) Units as Guiding Layers for High-Performance Lithium Metal Batteries  a; L, w; c/ z) k
[12]        In Vitro Reconstitution of Cinnamoyl Moiety Reveals Two Distinct Cyclases for Benzene Ring Formation
3 l# x# Z/ F, x8 \; n, M. O) N[13]        Regulation of 2D DNA Nanostructures by the Coupling of Intrinsic Tile Curvature and Arm Twist
$ ~' L6 ^) r- z2 b[14]        Highly Stable Neutral Corrole Radical: Amphoteric Aromatic-Antiaromatic Switching and Efficient Photothermal Conversion4 G# A, g2 d) c' @
[15]        Optical Imaging of the Molecular Mobility of Single Polystyrene Nanospheres
, u2 ?  ~, J) {) x[16]        Machine Learning Assisted Simultaneous Structural Profiling of Differently Charged Proteins in a Mycobacterium smegmatis Porin A (MspA) Electroosmotic Trap
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发表于 2023-11-13 15:50:54 | 显示全部楼层
本帖最后由 明月高悬 于 2023-11-13 16:05 编辑
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原始人 发表于 2023-11-7 18:14" R! B/ X1 f  x: Y7 b
浙大jacs的确到不了前五,差距比较明显

. T9 i* K  P1 g. P# w: }+ N3 R: A算十年的话,浙大是在前5, 这2年有点下降

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发表于 2023-11-13 16:02:41 | 显示全部楼层
明月高悬 发表于 2023-11-13 15:500 A% l0 V3 |8 Q1 o8 k7 |
算十年的话,浙大是在前5, 这几年有点下降

2 h- T( T9 Q) C# G# _你列的jacs22和我列的,也大差不差吧
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复旦  33 vs 356 H' A# z1 m# l& q& j
上交  24 vs 25
) {, {! J& o) {; f2 f浙大  20 vs 18
3 L7 I6 m  @/ Q% g5 H1 D& g% d( ^南大  16 vs 19
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毕竟是整体机查 ,没精力一一核对
% @$ z$ L- u( R% `' F  R5 ?浙大不知道有没有署名的问题或者zhejiang unv of xxx 之类的

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发表于 2023-11-13 16:06:43 | 显示全部楼层
本帖最后由 明月高悬 于 2023-11-13 16:12 编辑 ! b- P8 V) _+ c4 m3 l
原始人 发表于 2023-11-13 16:025 j; c7 t) t: g" ?3 f
你列的jacs22和我列的,也大差不差吧0 G" _" k8 q: P. h

. c: \/ v( i. m0 G6 ?4 R7 x复旦  33 vs 35
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我是一一对应一篇一篇查过,没有zhejiang univ of xxx 了,不知道你是怎么查的?按道理都应该偏多,你的结果只有浙大偏少,其它三所偏高?

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 楼主| 发表于 2023-11-13 16:09:14 | 显示全部楼层
明月高悬 发表于 2023-11-13 16:06
7 x7 a* ?! q9 w/ J. g1 g# d  J$ L我是一一对应一篇一篇查过,没有zhejiang univ of xxx 了,不知道你是怎么查的? ...

5 M! ~6 U* l) m$ E+ B6 W6 ~那你是挺牛逼的……多查几年眼睛都瞎了

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发表于 2023-11-13 16:15:07 | 显示全部楼层
光从名字的锲合度,应该只有浙大和南大偏高,因为交大和复旦区分度太高了

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发表于 2023-11-13 16:52:10 来自手机 | 显示全部楼层
南山不老翁 发表于 2023-11-13 16:21, R8 J; b+ q3 G
又来了?论文写完了?
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怕较真?

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发表于 2023-11-13 17:25:09 来自手机 | 显示全部楼层
一边去你这个坏人,害得我被哪个不分青红皂白的版主关小黑屋,

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发表于 2023-11-13 20:46:28 | 显示全部楼层
上海摔跤大的翁翁又来碰瓷,5 ^9 ^# E( @2 s% b8 B) e) w
今天又摔了几个跟头?
1 C. ^3 a9 ~: N  P; v7 S9 V; _6 ^摔跤大翁翁0 w3 {1 N2 u- r  p  l, P

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发表于 2023-11-14 00:47:21 来自手机 | 显示全部楼层
smiletime 发表于 2023-11-9 11:541 \9 {! @4 v# T7 p; A
感觉厦大化学近几年发文比较重视nature子刊。2023年截止目前为止,化院已发nature大子刊13篇,nature commu ...

# T* K, A9 n$ I# H( E感觉科大化学也是如此。重心转移到NS、N大子刊。' s) r+ {* y; N; Z/ a8 H; O) Z1 b5 {0 J
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科大保持JACS硬通货就可以了,Angew有像AM一样越来越水的趋势……

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发表于 2023-12-10 14:02:36 来自手机 | 显示全部楼层
马斯克全职回国 发表于 2023-11-9 11:582 P; I& [8 G4 _$ M) r
应该是受到学校或者院系的奖励政策指挥,小NC的工分比J/A高
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好像是,好几年前我看了一个学院的科研奖励,nat com一篇奖励2万,和其它nature子刊一样,当时就觉得不合理。不晓得现在还是不是这样。

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发表于 2023-12-10 14:08:27 来自手机 | 显示全部楼层
原始人 发表于 2023-11-9 14:34( T3 |  D3 [6 X; x  l- V. q
厦大顶刊一直不错,接近前十的水平
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主要是工科医科以及数理还没完全起来,光靠化生海有点单调
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数学暂时看不到希望,物理虽然以前很差,但这几年大力引进年轻人,希望四五年后看到结果。

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发表于 2023-12-10 14:19:06 来自手机 | 显示全部楼层
原始人可否出个jacs和应用化学两刊近三年变化

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发表于 2023-12-10 14:22:17 来自手机 | 显示全部楼层
楼主ID还在吗

黄金长老

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发表于 2023-12-11 12:45:20 来自手机 | 显示全部楼层
ni里面有jacs指数,直接掐取即可。

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发表于 2024-12-14 14:59:28 | 显示全部楼层
楼主可以更新了            

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发表于 2024-12-14 15:48:13 | 显示全部楼层
化学尤其是有机化学JACS比Angew好一些,质量应该是Angew的1.2-1.3倍。我见过不少有机合成PI的Angew都发了十多篇了,JACS只有1篇甚至1篇都没有!

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发表于 2024-12-14 15:52:47 来自手机 | 显示全部楼层
靠挂名论文的,南开肯定处于劣势。不过今年南开以绝对优势第一单位完全自主的JACS第一,上升势头非常明显。

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发表于 2024-12-14 16:23:43 来自手机 | 显示全部楼层
Johnny 发表于 2024-12-14 15:48( Z' V5 d8 ]* }$ ~5 _; X% C9 g
化学尤其是有机化学JACS比Angew好一些,质量应该是Angew的1.2-1.3倍。我见过不少有机合成PI的Angew都发了十 ...

6 _5 M/ p' J6 w* |0 djacs肯定高于angew。
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不过楼主jacs数据跟另外一个angewboy的统计相去甚远,到底哪个准?

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发表于 2024-12-14 17:02:36 | 显示全部楼层
搜了下前十高校
/ C9 Q& o% K$ chttps://bbs.netbig.top/thread-64405-1-1.html

黄金长老

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发表于 2024-12-14 17:16:06 来自手机 | 显示全部楼层
原始人 发表于 2024-12-14 17:02$ [+ d; L$ n7 V2 N& f9 r
搜了下前十高校
* G. o( c; v7 X4 N/ L( ^6 ^! d6 Khttps://bbs.netbig.top/thread-64405-1-1.html
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赞大佬。
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发表于 2024-12-14 19:29:22 来自手机 | 显示全部楼层
2024年jacd排名呢

黄金长老

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发表于 2024-12-15 13:21:27 来自手机 | 显示全部楼层
1944931585 发表于 2024-12-14 19:295 K/ ^' q4 [( @! H( \5 s6 ~5 a3 ]
2024年jacd排名呢
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太费时费力,直接看NI指数之jacs指数最简单。
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就算有挂名贡献,但是挂名也是资源啊。各大高校附属医院的挂名贡献,那多了去了。

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发表于 2024-12-15 13:56:20 来自手机 | 显示全部楼层
马斯克全职回国 发表于 2023-11-7 15:48
3 Q! Z/ I2 `  X+ Q$ t; o; ?排名        年份        2023/ {% H9 ?5 R& t; c2 _
1        中国科技大学        75
, |2 F) e& w) i: ?$ X2        北京大学        75* e; T% C: j& H/ c0 e5 @- V- h4 @

1 Q! J8 y) H( k7 j! m# r复旦的化学发在什么期刊上?这个指标有点意外
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