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Can an InChI for Nano Address the Need for a Simplified Representation of Complex Nanomaterials across Experimental and Nanoinformatics Studies?

机译:纳米inchi可以解决跨实验和纳米信息学研究的复杂纳米材料的简化表示的需要吗?

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摘要

Chemoinformatics has developed efficient ways of representing chemical structures for small molecules as simple text strings, simplified molecular-input line-entry system (SMILES) and the IUPAC International Chemical Identifier (InChI), which are machine-readable. In particular, InChIs have been extended to encode formalized representations of mixtures and reactions, and work is ongoing to represent polymers and other macromolecules in this way. The next frontier is encoding the multi-component structures of nanomaterials (NMs) in a machine-readable format to enable linking of datasets for nanoinformatics and regulatory applications. A workshop organized by the H2020 research infrastructure NanoCommons and the nanoinformatics project NanoSolveIT analyzed issues involved in developing an InChI for NMs (NInChI). The layers needed to capture NM structures include but are not limited to: core composition (possibly multi-layered); surface topography; surface coatings or functionalization; doping with other chemicals; and representation of impurities. NM distributions (size, shape, composition, surface properties, etc.), types of chemical linkages connecting surface functionalization and coating molecules to the core, and various crystallographic forms exhibited by NMs also need to be considered. Six case studies were conducted to elucidate requirements for unambiguous description of NMs. The suggested NInChI layers are intended to stimulate further analysis that will lead to the first version of a “nano” extension to the InChI standard.
机译:ChemoInformatics已经开发了有效的方法,即将小分子的化学结构代表为简单的文本串,简化的分子输入线入口系统(SMILES)和IUPAC国际化学标识符(INCHI),其是机器可读的。特别是,QuinIS已经扩展以编码混合物和反应的形式化的表示,并且工作正在进行中以这种方式代表聚合物和其他大分子。下一个边界是以机器可读格式对纳米材料(NMS)的多分量结构进行编码,以实现用于纳米信息学和监管应用的数据集。由H2020研究基础设施纳米组织组织的研讨会和纳米螺母项目纳米洛伊特分析了参与NMS(Ninchi)的inchi的问题。捕获NM结构所需的层包括但不限于:核心组合物(可能是多层);表面形貌;表面涂层或功能化;用其他化学品掺杂;和杂质的代表。 NM分布(尺寸,形状,组合物,表面性质等),将表面官能化和涂覆分子的化学键连接到核心的类型以及由NMS表现出的各种晶体形式也需要考虑。进行了六种案例研究以阐明NMS明确描述的要求。建议的尼尼加层旨在刺激进一步的分析,这将导致第一版本的“纳米”延伸到inchi标准。

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