Chinese Science Bulletin

Submission Deadline ( Vol 70 , Issue 10 )

16 Oct 2025
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Publish On ( Vol 70 , Issue 10 )

31 Oct 2025

Chinese Science Bulletin

Chinese Science Bulletin (ISSN:0023-074X) and (E-ISSN:2095-9419) is a monthly peer-reviewed scopus indexed journal originally from 1963 to 1964, from 1980 to 1984, 1989, from 2015 to Present. The publisher of the journal is Editorial Office of Journal of Science China Press.The journal welcomes all kind of research/review/abstract papers regarding Multidisciplinary subjects.

Scopus Index(2025)

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AIM AND SCOPE

Chinese Science Bulletin

1.Agricultural Science/Agricultural Engineering

2.Electrical Engineering and Telecommunication Section

3.Computer Science and Engineering

4.Civil and Architectural Engineering Section

5.Mechanical and Materials Engineering Section

6.Chemical Engineering Section

7.Food Engineering Section

8.Physics Section

9.Mathematics Section

10.Accounting and finance

11.Economics

12.Management

13.Social science

14.Earth science

15.Law

16.Linguistics

17.Biological science

18.Environmental science

19.Material science

20.zoology

21.Fishery and Science

22.Psychology

23.International Business

24.HRM

25.Marketing

26.History

27.Public health

28.Botany

ALL PUBLISH JOURNAL HERE

Chinese Science Bulletin

  • CSB-15-01-2024-1130

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  • Chinese Science Bulletin

Dynamic regulation of promoter-proximal RNA polymerase II pausing

The promoter-proximal pause induced by the binding of the DRB sensitivity-inducing factor (DSIF) and the negative elongation factor (NELF) to RNAP II is a key step in the regulation of metazoan gene expression. It helps maintain a permissive chromatin landscape and ensures a quick transcriptional response from stimulus-responsive pathways such as the innate immune response. It is also involved in the biology of several RNA viruses such as the human immunodeficiency virus (HIV), the influenza A virus (IAV) and the hepatitis delta virus (HDV). HIV uses the pause as one of its mechanisms to en

  • CSB-15-01-2024-1129

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  • Chinese Science Bulletin

Metal-organic frameworks: For functional surface enhancement Raman scattering

Gas sensing holds great significance in environment monitoring, real–time security alerts and clinical diagnosis, which require sensing technology to distinguish various target molecules with extreme sensitivity and selectivity. Surface–enhanced Raman spectroscopy (SERS) has great potential in gas sensing for its single molecule sensitivity and fingerprint specificity. However, different from molecule sensing in solutions, SERS detection of gas often suffers from low sensitivity as gas molecules usually display a low Raman cross–section and poor affinity on traditional nob

  • CSB-15-01-2024-1128

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  • Chinese Science Bulletin

The progress of the biosynthesis of vitamin E

Vitamin E is easily oxidized by light, air, oxidizing agents and heat, limiting its application in many ways. Compared to vitamin E, vitamin E ester derivatives exhibit improved stability and a stronger antioxidant capacity, and even gain new biological functions. In recent years, enzymatic synthesis of vitamin E ester derivatives has received increasing attention due to its environmental friendliness, high catalytic efficiency, and inherent selectivity. This paper reviews the related progress of lipase-mediated preparation of vitamin E ester derivatives. The function of different vitamin E

  • CSB-15-01-2024-1127

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  • Chinese Science Bulletin

Frontier of El NiƱo-Southern Oscillation research

The El Niño–Southern Oscillation (ENSO) is the strongest interannual air–sea coupled variability mode in the tropics, and substantially impacts the global weather and climate. Hence, it is important to improve our understanding of the ENSO variability. Besides the well-known air–sea interaction process over the tropical Pacific, recent studies indicated that atmospheric and oceanic forcings outside the tropical Pacific also play important roles in impacting and modulating the ENSO occurrence. This paper reviews the impacts of the atmosphere–ocean variability o

  • CSB-15-01-2024-1126

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  • Chinese Science Bulletin

Graphene-based materials for antenna applications

The accurate modeling of frequency-dispersive materials is a challenging task, especially when a scheme with a transient nature is utilized, as it is the case of the finite-difference time-domain method. In this work, a novel implementation for the modeling of graphene-oriented dispersive materials via the piecewise linear recursive convolution scheme, is introduced, while the time-varying conductivity feature is, additionally, launched. The proposed algorithm is employed to design a reduced graphene-oxide antenna operating at 6 GHz. The transient response to graphene’s conductivity v

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