Irresponsible to others but responsible to me: Testing employees' responses to external corporate social irresponsibility and internal corporate social responsibility

IF 5.4 2区 医学 Q2 MATERIALS SCIENCE, BIOMATERIALS
Cen April Yue, Baobao Song, Weiting Tao, Minjeong Kang
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引用次数: 0

Abstract

Drawing upon deonance theory and expectancy violation theory, we investigate how employees react when their companies engage in corporate social irresponsibility (CSiR) that harms external stakeholders who are not employees themselves. Furthermore, we introduce the concept of perceived internal corporate social responsibility (CSR), which refers to employees' perceptions of how organizational actions and policies benefit them personally. We developed a conceptual model that illustrates the joint influence of external CSiR and internal CSR on employees' perceptual, relational, and behavioral outcomes. An online survey with 417 full-time US employees revealed that employees tend to evaluate unethical corporate practices holistically, in the context of other factors, such as the company's moral character and internal CSR, rather than based on external immorality. Our study contributes to a deeper understanding of employee reactions to both CSR and CSiR, emphasizing the importance of organizations evaluating the broader ramifications of their unethical actions.

对他人不负责任,对自己负责:测试员工对外部企业社会责任和内部企业社会责任的反应
我们借鉴失调理论(deonance theory)和期望违背理论(expectancy violation theory),研究了当企业不负社会责任(CSiR)损害外部利益相关者(非员工本人)时,员工的反应。此外,我们还引入了感知内部企业社会责任(CSR)的概念,即员工对组织行为和政策如何使其个人受益的感知。我们建立了一个概念模型,说明外部 CSiR 和内部 CSR 对员工的感知、关系和行为结果的共同影响。一项针对 417 名全职美国员工的在线调查显示,员工倾向于结合其他因素(如公司的道德品质和内部企业社会责任)来全面评估公司的不道德行为,而不是基于外部的不道德行为。我们的研究有助于更深入地了解员工对企业社会责任和企业社会责任的反应,强调了企业评估其不道德行为的广泛影响的重要性。
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来源期刊
ACS Biomaterials Science & Engineering
ACS Biomaterials Science & Engineering Materials Science-Biomaterials
CiteScore
10.30
自引率
3.40%
发文量
413
期刊介绍: ACS Biomaterials Science & Engineering is the leading journal in the field of biomaterials, serving as an international forum for publishing cutting-edge research and innovative ideas on a broad range of topics: Applications and Health – implantable tissues and devices, prosthesis, health risks, toxicology Bio-interactions and Bio-compatibility – material-biology interactions, chemical/morphological/structural communication, mechanobiology, signaling and biological responses, immuno-engineering, calcification, coatings, corrosion and degradation of biomaterials and devices, biophysical regulation of cell functions Characterization, Synthesis, and Modification – new biomaterials, bioinspired and biomimetic approaches to biomaterials, exploiting structural hierarchy and architectural control, combinatorial strategies for biomaterials discovery, genetic biomaterials design, synthetic biology, new composite systems, bionics, polymer synthesis Controlled Release and Delivery Systems – biomaterial-based drug and gene delivery, bio-responsive delivery of regulatory molecules, pharmaceutical engineering Healthcare Advances – clinical translation, regulatory issues, patient safety, emerging trends Imaging and Diagnostics – imaging agents and probes, theranostics, biosensors, monitoring Manufacturing and Technology – 3D printing, inks, organ-on-a-chip, bioreactor/perfusion systems, microdevices, BioMEMS, optics and electronics interfaces with biomaterials, systems integration Modeling and Informatics Tools – scaling methods to guide biomaterial design, predictive algorithms for structure-function, biomechanics, integrating bioinformatics with biomaterials discovery, metabolomics in the context of biomaterials Tissue Engineering and Regenerative Medicine – basic and applied studies, cell therapies, scaffolds, vascularization, bioartificial organs, transplantation and functionality, cellular agriculture
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