Changes in the number of publications in a certain field might reflect the dynamic of scientific progress in this field, since an increase in the number of publications can be interpreted as an increase in the field-specific knowledge. In this paper, we present a methodological approach to analyse the dynamics of science on lower aggregation levels, i.e., the level of research fields. Our trend analysis approach is able to uncover very recent trends, and the methods used to study the trends are simple to understand for the possible recipients of the results. In order to demonstrate the trend analysis approach, we focused in this study on the annual number of publications (and patents) in chemistry (and related areas) between 2014 and 2020 identifying those fields in chemistry with the highest dynamics (largest rates of change in publication counts). The study is based on the mono-disciplinary literature database CAplus. Our results reveal that the number of publications in the CAplus database is increasing since many years. Research regarding optical phenomena and electrochemical technologies was found to be among the emerging topics in recent years.
翻译:某些领域出版物数量的变化可能反映了该领域科学进步的动态,因为出版物数量的增加可被解释为具体领域知识的增加。在本文中,我们提出了一个分析科学在较低汇总水平上动态的方法,即研究领域的水平。我们的趋势分析方法能够揭示出非常近期的趋势,研究趋势的方法对于结果的可能接受者来说是简单易懂的。为了展示趋势分析方法,我们在本研究报告中侧重于2014年至2020年化学(及相关领域)年度出版物(和专利)的数量,确定了化学(及相关领域)中具有最高动态的领域(出版物数量变化率最高)。这项研究以单学科文献数据库Caplus为基础。我们的结果显示,Caplus数据库的出版物数量多年来一直在增加。关于光学现象和电化学技术的研究是近年来新出现的主题之一。