刊·见 | APC全免!综合领域SCI期刊,关注自然科学研究新进展!

学术   2024-11-28 16:33   北京  



Journal of Taibah University for Science发表自然科学领域的高质量、开放获取的研究成果,特别聚焦于物理化学和离散数学两大领域。期刊还广泛涵盖了物理学、地质学、生物学和环境研究,尤其是分子生物学和生物技术方面。



ISSN: 1658-3655

除了对期刊进行详尽的介绍外,还向您介绍刊内近三年高被引文章,以及近一年高阅读文章:

新耦合KdV和新耦合Zakharov-Kuznetsov系统的多峰孤子和其他波解及其稳定性的动态研究

Bi2O3/MoSe2混合纳米结构光催化降解亚甲基蓝染料的研究进展

辫状河扇沉积特征研究

该期刊已被SCIE, Scopus, DOAJ数据库收录。








影响因子


根据JCR显示,Journal of Taibah University for Science

在综合期刊领域排名37/134


CiteScore














根据Scopus显示,Journal of Taibah University for Science排名情况:

数学

普通数学 10/399

农业和生物科学

普通农业和生物科学领域排名27/221

地球与行星科学

普通地球与行星科学领域排名29/195

物理和天文学

普通物理和天文学领域排名45/243

化学

普通化学领域排名97/408

环境科学

普通环境科学领域排名56/233

生物化学、遗传学和分子生物学

普通生物化学、遗传学和分子生物学领域排名55/221


中国科学院分区














根据2023年12月27日发布的中国科学院文献情报中心期刊分区表(升级版)显示:

大类及分区:综合性期刊3区

小类及分区:综合性期刊3区


作者须知



接收文章类型


Journal of Taibah University for Science接收研究论文(Research Articles)、简短通讯(Short communications)、编辑通信(Letters to the Editor)以及综述文章(Review Article)。




审稿周期

从提交稿件到获取初审意见,平均需要9天

稿件一旦接受后,在线出版平均需要12天




文章出版费(APC)


在Taibah University的支持下,本刊目前免费出版。发表的稿件将不收取APC费用

了解本刊及其他期刊最新APC情况,请访问期刊主页或Taylor & Francis Open Access APC Cost Finder查找适用于作者所在国家及不同文章类型的费用情况。若您所在的机构或相关资助者与我们签有开放获取出版协议,您可能有资格获得APC支持,请访问我们的作者服务网站以了解更多!

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编辑团队

Journal of Taibah University for Science由沙特阿拉伯泰巴大学(Taibah University)Shaya Y. Alraqa博士担任主编。期刊编辑团队以深厚的专业知识和丰富的编辑经验,为期刊的学术质量保驾护航。作为一本备受瞩目的国际性期刊,本刊在组织架构上充分体现了其全球化视野。期刊根据数学、物理、生物、化学、地质学5大核心学科领域精心设置了相应的学科编辑团队。这些编辑不仅包括来自沙特阿拉伯本土的优秀学者,同时广泛吸纳了来自巴基斯坦、美国、泰国、土耳其、埃及、波兰等多个国家的科研精英。


主编介绍


Shaya Y. Alraqa博士


Shaya Y. Alraqa博士在沙特阿拉伯泰巴大学(Taibah University)任副教授,关注有机化学方向的研究。


作者分布

根据JCR显示,近三年在Journal of Taibah University for Science发文的国家中,发文前三的国家/地区有:

沙特阿拉伯

埃及

巴基斯坦


近三年,在Journal of Taibah University for Science发文的全球高校和科研机构中,发文数量排名前三位的是:

埃及知识库(EKB)

沙特阿拉伯泰巴大学

哈立德国王大学


近三年内高被引文章及

近一年高阅读文章

新耦合KdV和新耦合Zakharov-Kuznetsov系统的多峰孤子和其他波解及其稳定性的动态研究

作者:Jun Wang et al.

Figure 1. Appropriate parameter values to result (Equation19) are illustrated as follows: Figures (A,B,E) describe the bright soliton and their 2D contour plot figures (B,D,F), respectively, at 𝛿=1,𝛾=0.5,𝛽=1.5,𝐴1=1.5,𝐴2=0.1,𝜎=−1,𝜆=1,𝛼=0,𝑎0=1.



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 文章摘要: 上下滑动查看

In this paper, our aim is to further expand the use of the two-variable (G′/G,1/G)-expansion approach to a new coupled KdV and Z-K system, which has various significant applications in different fields of applied sciences. The KdV equation, along with shallow-water waves and long internal waves in oceans, basically explains how long, one-dimensional waves propagate in a variety of physical conditions. The study of coastal waves on the basis of the ocean is done using the Zakharov–Kuznetsov (Z-K) equation and this model is utilized to illustrate ion-acoustic wave propagation. By using this method, different forms of analytical solutions of the new coupled KdV (NCKdV) system and the new coupled Z-K (NCZ-K) system, such as solitons, multi-peak solitons, solitary waves, trigonometric, hyperbolic and rational functions and other wave solutions are constructed. The significant features of multi-peak solitons induced by the higher-order effects, including velocity variations, localization or periodicity attenuation and state transitions, are revealed. When the localization disappears then the multi-peak soliton becomes a periodic wave. The constructed solutions are also presented graphically having their applications in engineering, etc. The stability of the solution is examined by utilizing modulation instability. The results obtained show that the proposed technique is universal and efficient. In addition, this technique can also be applied to lots of other new coupled systems arising in other areas of applied sciences.


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Bi2O3/MoSe2混合纳米结构光催化降解亚甲基蓝染料的研究进展

作者:M. Alahmadi et al.

Figure 1. The XRD patterns of (i) pure Bi2O3, (ii) pure MoSe2, and (iii) hybrid nanocomposite of Bi2O3/MoSe2.



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Herein, we demonstrate the sample and low coast hydrothermal synthesis of a nanocomposite of Bi2O3/MoSe2 for hybrid photocatalyst. The structure of as-synthesized samples was characterized by using several techniques, including XRD spectroscopy, Raman spectroscopy, XPS, SEM, BET, and UV-visible absorption spectroscopy. The nitrogen adsorption–desorption measurements show that the samples have a mesoporous texture with slits like pores. The Bi2O3/MoSe2 nanocomposite had BET surface areas of 36.439 m2/g, which were more than those of Bi2O3 (18.342 m2/g) and MoSe2 (12.923 m2/g). Under visible illumination, the photocatalytic activities of pure samples ( Bi2O3 and MoSe2) and the hybrid Bi2O3/MoSe2 sample for the disintegration of methylene blue were assessed. The results show that the Bi2O3/MoSe2 sample showed the highest photocatalytic degradation efficiency (i.e. 96.5% after an exposure time of 80 min). The increased photocatalytic activity is due to the mixed sample's high crystallinity and surface area, as well as the small particle size.


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辫状河扇沉积特征研究

作者:Jialin Fu et al.

Figure 1. (a) Location of the Ordos Basin and locations of structures in the study area. (b) Stratigraphic division of study area. (c) Cycle division of well S8.



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As a typical tight sandstone gas reservoir in the Ordos Basin, the second member of the Shanxi Formation in the XQ gas field in the Ordos Basin has had rich gas reservoirs and good development effects in the past. On the basis of previous studies, this paper brings new understanding to the sedimentary model of this area. Nine kinds of single lithofacies and seven kinds of lithofacies combinations are determined. Braided fluvial fan deposits in distributive fluvial systems likely developed in this area. The study area is part of the middle subfacies of this sedimentary facies, and five kinds of sedimentary microfacies environments developed. Finally, establishing sedimentary model based on sedimentary characteristics. The braided fluvial fan sedimentary model based on DFS is of great significance for deepening the understanding of terrestrial sedimentary systems and providing guidance for the exploration and development of oil and gas bearing basins.


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