How do customers respond to robotic service? A scenario-based study from the perspective of uncertainty reduction theory

Yanqing Lin, Xun Zhou, Wenjie Fan

Research output: Chapter in Book/Report/Conference proceedingConference contributionScientificpeer-review

7 Citations (Scopus)

Abstract

Confronted with an increasing popularization and advancement of applying artificial intelligence in robotic technology, practitioners in the service sector have been increasingly deploying service robots in their operations. Motivated by a paucity of knowledge on how consumers would respond to the robotic service, this study establishes on the uncertainty reduction theory to advance a research model that seeks to unveil how both customer trait and service characteristic affect customers' revisit intention to robotic service via perceived risk. Based on a scenario-based experiment with 190 responses in the hotel reception service context, our results reveal that perceived risk partially mediates the relationship between personal innovativeness and service revisit intention, so does between service heterogeneity and revisit intention. Furthermore, the service context, i.e., whether the prior service experience satisfies the customer, can moderate the relationship between personal innovativeness (service heterogeneity) and perceived risk. This study also draws related theoretical and practical implications.
Original languageEnglish
Title of host publicationProceedings of the 54th Annual Hawaii International Conference on System Sciences, HICSS 2021
PublisherHawaii International Conference on System Sciences
Publication date2021
ISBN (Electronic)978-0-9981331-4-0
Publication statusPublished - 2021
MoE publication typeA4 Article in conference proceedings

Publication series

NameHawaii International Conference on System Sciences
ISSN (Electronic)1530-1605

Keywords

  • 512 Business and Management
  • human-robot interactions
  • artificial intelligence
  • personal innovativeness
  • revisiting intention
  • service heterogeneity
  • service robot

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