对生物量监测方法和未来研究议程的最新回顾

IF 5.5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-06-05 DOI:10.3846/tede.2024.20761
F. Ecer
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引用次数: 0

摘要

与其他获取属性权重值的加权方法相比,最佳和最差法的优越性在于它能在合理的成对比较次数下获得高置信度的结果。尽管最佳-最差法(BWM)是一种著名的多标准决策(MCDM)方法,已成功应用于几乎所有科学领域,以解决具有挑战性的现实问题,但目前还没有研究全面考察过这方面的最新进展。本研究详细概述了 2015-2022 年期间有关生物武器管理的出版物。基于从 Scopus 数据库中获取的信息,本研究展现了当前生物武器管理研究的全貌。换句话说,本文分析了有关生物武器管理的现有文献,并确定了主题背景、应用领域、新兴趋势和剩余研究缺口,以阐明与这些缺口相一致的未来研究议程。此外,本文还分析了从工程学到材料科学的十大科学领域中最新的生物预警机制研究。"工程学"、"计算机科学 "和 "商业、管理和会计 "是生物预警机制研究的热门领域。中国是 "工程 "和 "计算机科学 "领域最活跃的国家,而印度则是 "商业、管理和会计 "领域的领头羊。本研究还揭示了在生物武 器学研究方面仍存在许多研究空白。本研究的全貌不仅展示了生物武 器学研究的现状,还将对新研究的方向和质量产生积极影响。
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A STATE-OF-THE-ART REVIEW OF THE BWM METHOD AND FUTURE RESEARCH AGENDA
The superiority of BWM over other weighting methods for obtaining the weight values of the attributes is that it achieves high-confidence results with a reasonable number of pairwise comparisons. Although the best-worst method (BWM) is a well-known multi-criteria decision-making (MCDM) method that has been successfully utilized in almost all scientific areas to solve challenging real-life problems, no research has comprehensively examined the state-of-the-art in this regard. The present study depicts a detailed overview of publications concerned with BWM during the period 2015–2022. Based on the information obtained from the Scopus database, this work presents a big picture of current research on BWM. In other words, this paper analyzes the existing literature about BWM and identifies thematic contexts, application areas, emerging trends, and remaining research gaps to shed light on future research agendas aligning with those gaps. Further, the most recent BWM research is analyzed in the top ten scientific areas, from engineering to materials science. “Engineering”, “computer science”, and “business, management, and accounting” are the hottest fields of BWM research. China is the most active country regarding “engineering” and “computer science”, whereas India is the leader in “business, management, and accounting”. The study also reveals that there are still many research gaps in BWM research. The big picture taken in this study will not only showcase the current situation of BWM research but will also positively impact the direction and quality of new research.
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
期刊最新文献
Issue Publication Information Issue Editorial Masthead Binder-Free Direct Electrodeposition of High-Activity Sites MnO2 Nanosheets@NiO Nanotubes as a Multifunctional Electrode for Supercapacitor Applications and Hydrogen and Oxygen Evolution Reactions Lithium-Metal Batteries with Ternary Cathode-Supported NASICON-Type Composite Solid Electrolytes Enabling High-Rate Capability and Excellent Cyclic Performance Correction to “Hybridizing Acid-Treated PEDOT:PSS with AgSbTe2: A Promising Strategy for Enhancing Thermoelectric Performance of AgSbTe2-Based Materials”
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