Neidiger Charlotte, Saier Tarek, Kühn Kai, Larignon Victor, Färber Michael, Bizzarri Claudia, Šimek Tosino Helena, Holzhauer Laura, Erdmann Michael, Nguyen An, Harvey Dean, Tremouilhac Pierre, Kramer Claudia, Hansch Daniel, Schönle Fabian, Alpin Jana, Hartmann Maximilian, Wagner Jérome, Jung Nicole, Bräse Stefan
KIT-Bibliothek (BIB), Karlsruhe Institute of Technology, Kaiserstraße 12, 76131, Karlsruhe, Germany.
Institute AIFB, Karlsruhe Institute of Technology, Kaiserstraße 12, 76131, Karlsruhe, Germany.
J Cheminform. 2025 Jul 6;17(1):99. doi: 10.1186/s13321-025-01037-w.
In this work, a concept for an open chemistry knowledge base was developed to integrate chemical research results into a collaboratively usable platform. To achieve this, we enhanced Semantic MediaWiki (SMW) to support the collection and structured summary of chemical data contained in publications. We implemented tools for capturing chemical structures in machine-readable formats and designed data forms along with a data model to ensure standardized input and organization of research results. These enhancements allow for effective data comparison and contextual analysis within an expandable Wiki environment. The use of the platform was specifically demonstrated by organizing and comparing research in the area of "CO reduction in homogeneous photocatalytic systems," showcasing its potential to significantly enhance the collaborative collection of research outcomes.Scientific contributionThis work shows ways to collaboratively collect and manage subject-specific knowledge in the domain of chemistry via an open database. By integrating cheminformatic tools into Semantic Mediawiki, an established technology for building knowledge databases is made systematically usable for the chemical community. The integration of chemistry-specific workflows and forms allows the mapping of data from current research with links to the original sources. This work is intended to show how gaps in the information system of scientists can be closed without having to use commercial systems.
在这项工作中,开发了一个开放化学知识库的概念,以将化学研究成果整合到一个可协同使用的平台中。为实现这一目标,我们对语义媒体维基(SMW)进行了增强,以支持对出版物中包含的化学数据进行收集和结构化总结。我们实现了以机器可读格式捕获化学结构的工具,并设计了数据表单以及数据模型,以确保研究结果的标准化输入和组织。这些增强功能允许在可扩展的维基环境中进行有效的数据比较和上下文分析。通过组织和比较“均相光催化系统中CO还原”领域的研究,具体展示了该平台的用途,突显了其在显著增强研究成果协同收集方面的潜力。
科学贡献
这项工作展示了通过开放数据库在化学领域协同收集和管理特定主题知识的方法。通过将化学信息学工具集成到语义媒体维基中,一种用于构建知识数据库的成熟技术被系统地应用于化学领域。特定于化学的工作流程和表单的集成允许将当前研究中的数据与原始来源的链接进行映射。这项工作旨在展示如何在不使用商业系统的情况下填补科学家信息系统中的空白。