Creative Leadership in Digital Startups: A Longitudinal Case Study in Innovation Management

Sulistyorini Sulistyorini (1), Roya Zahir (2), Zara Ali (3)
(1) Universitas Islam Negeri Sayyid Ali Rahmatullah Tulungagung, Indonesia,
(2) Kunduz University, Afghanistan,
(3) Khost University, Afghanistan

Abstract

In the hyper-competitive digital economy, the survival and growth of startups are intrinsically linked to their capacity for continuous innovation. While leadership is acknowledged as a critical driver of innovation, there is a limited understanding of how creative leadership specifically manifests and evolves over time within the volatile startup environment. This study aims to address this gap by longitudinally exploring the dynamics of creative leadership and its influence on innovation management processes within a digital startup. It seeks to identify the key leadership behaviors that foster a sustainable innovation culture and to understand how these behaviors adapt to the startup’s developmental stages. Employing a qualitative longitudinal case study approach, this research tracked a single digital startup over a three-year period. Data were collected through semi-structured interviews with the founding team and employees, direct observation of team meetings, and an analysis of internal documents related to project development and strategic planning. Key practices identified include fostering psychological safety, championing nascent ideas, and strategically allocating resources for experimentation. These leadership practices directly correlated with the development of an agile and resilient innovation management system. The study concludes that effective creative leadership in digital startups is contingent on the leader’s ability to adapt their style to the organization’s evolving needs.


 

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References

Ac, I. A. C., Santoyo, K. D. P., Medina, S. R. P., Chacón, S. H., & Cetina, Y. L. (2025). Geographic Gamification Strategies in Mathematics Education: Enhancing Linear Algebra Learning at the Technological University of Cancún. In Mata-Rivera M.F., Zagal-Flores R., Elisabeth Ballari D., & León-Borges J.A. (Eds.), Commun. Comput. Info. Sci.: Vol. 2298 CCIS (pp. 122–137). Springer Science and Business Media Deutschland GmbH; Scopus. https://doi.org/10.1007/978-3-031-80017-7_8

Barde, A., Thakur, R., Patel, S., Sinah, N., & Barde, S. (2024). AI-Based Smart Education System to Enhanced the Learning of Students. Int. Conf. Adv. Comput. Res. Sci. Eng. Technol., ACROSET. 2024 International Conference on Advances in Computing Research on Science Engineering and Technology, ACROSET 2024. Scopus. https://doi.org/10.1109/ACROSET62108.2024.10743859

Candra, S., Handoko, B. L., & Lindawati, A. S. L. (2024). Impact of Gamification Elements for Student Acceptance on Gamification-enhanced Learning. ACM Int. Conf. Proc. Ser., 82–89. Scopus. https://doi.org/10.1145/3678392.3678396

Christodoulou Raftis, C., van Hassel, E., & Nanway Boukani, L. (2024). The impact and importance of serious games in maritime education: An empirical application. Maritime Policy and Management. Scopus. https://doi.org/10.1080/03088839.2024.2442603

Cui, Q., & Fwuyuan, W. (2024). Adaptive Learning Strategies in Higher Vocational Education: Utilizing Concise Cases for Diverse Learning Styles. International Journal of Instructional Cases, 8(2), 18–37. Scopus.

Dolly, M., Nimbarte, A., & Wuest, T. (2024). The effects of gamification for manufacturing (GfM) on workers and production in industrial assembly. Robotics and Computer-Integrated Manufacturing, 88. Scopus. https://doi.org/10.1016/j.rcim.2024.102722

Escandon-Barbosa, D., & Salas-Paramo, J. (2025). Virtual reality in business management education: Evaluating through the TPACK (technological pedagogical content knowledge) lens. Computers in Human Behavior Reports, 18. Scopus. https://doi.org/10.1016/j.chbr.2025.100634

Fraga, C., Cardoso, L., de Stefano, E., Lima Santos, L., & Motta, N. (2025). Mapping Gamification for Sustainable Urban Development: Generating New Insights for Tourism Education. Tourism and Hospitality, 6(1). Scopus. https://doi.org/10.3390/tourhosp6010017

Gasner P. (Ed.). (2024). Proceedings—2024 23rd RoEduNet Conference: Networking in Education and Research, RoEduNet 2024. In Proc. RoEduNet IEEE Int. Conf. IEEE Computer Society; Scopus. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85208963262&partnerID=40&md5=4eeb53bad007e65f3dc01b43caa66163

Ghaffarifar, S., Behmanesh, F., Gholamnia-Shirvani, Z., Nikbakht, H.-A., & Nazmi, S. (2024). Designing, implementing and evaluating childbirth training protocol for undergraduate midwifery students with a computer and mobile application based on gamification method: Study protocol. BMC Medical Education, 24(1). Scopus. https://doi.org/10.1186/s12909-024-06316-y

Hu, X., & Li, J. (2024). Research on the integrated solution of physical education based on smart campus. Advances in Physiology Education, 48(2), 378–384. Scopus. https://doi.org/10.1152/advan.00006.2024

Kaliraj, P., Singaravelu, G., & Devi, T. (2024). Transformative Digital Technology for Disruptive Teaching and Learning. In Transformative Dig. Technology for Dis. Teaching and Learning (p. 279). CRC Press; Scopus. https://doi.org/10.1201/9781032675176

Kamiliya, N., Syahchari, D. H., & Omar, A. (2024). Enhancing E-Learning through Gamification: Increasing User Enjoyment and Learning Outcomes. Int. Conf. Creat. Commun. Innov. Technol., ICCIT. 2024 3rd International Conference on Creative Communication and Innovative Technology, ICCIT 2024. Scopus. https://doi.org/10.1109/ICCIT62134.2024.10701268

Kanalikova, A., & Rakovská, E. (2024). User-Friendly Tools for New Digital Education in Computer Sience. In Fejedelem S. (Ed.), ICETA - Year Int. Conf. Emerg. eLearn. Technol. Appl., Proc. (pp. 282–287). Institute of Electrical and Electronics Engineers Inc.; Scopus. https://doi.org/10.1109/ICETA63795.2024.10850856

Kuzovkova, T. A., Sharavova, O. I., & Sharavova, M. M. (2024). The Causes and Sources of the Evolution of Engineering Education Competencies in the Field of Electronics and Communications. Intell. Technol. Electron. Devices Veh. Road Transp. Complex, TIRVED - Conf. Proc. 2024 Intelligent Technologies and Electronic Devices in Vehicle and Road Transport Complex, TIRVED 2024 - Conference Proceedings. Scopus. https://doi.org/10.1109/TIRVED63561.2024.10769847

Mitra, S., Kroeger, C. M., Wang, T., Masedunskas, A., Cassidy, S. A., Huang, R., Fontana, L., & Liu, N. (2024). Gamified Smartphone-App Interventions on Behaviour and Metabolic Profile in Patients at Risk of Cardiovascular Disease. In Bichel-Findlay J., Otero P., Scott P., & Huesing E. (Eds.), Stud. Health Technol. Informatics (Vol. 310, pp. 1542–1543). IOS Press BV; Scopus. https://doi.org/10.3233/SHTI231284

Mitra, S., Kroeger, C. M., Wang, T., Masedunskas, A., Cassidy, S., de Ciutiis, I., Hooijenga, P. T. E., Huang, R., Liu, N., & Fontana, L. (2024). The Impact of Gamified Smartphone App Interventions on Behaviour and Metabolic Outcomes in Individuals at Risk of Cardiovascular Disease. In Bichel-Findlay J. (Ed.), Stud. Health Technol. Informatics (Vol. 318, pp. 172–173). IOS Press BV; Scopus. https://doi.org/10.3233/SHTI240913

Montenegro C., Rocha A., & Cueva Lovelle J.M. (Eds.). (2024). International Conference on Management, Tourism and Technologies, ICMTT 2023. Lecture Notes in Networks and Systems, 774. Scopus. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85182009896&partnerID=40&md5=bbea9f60ceae18a0409c193b1fc358fd

Moritani, M., & Kurihara, K. (2024). Development of an Automated Eye Drop System Using Games. GCCE - IEEE Glob. Conf. Consum. Electron., 1212–1213. Scopus. https://doi.org/10.1109/GCCE62371.2024.10760835

Mylonas, G., Amaxilatis, D., Paganelli, F., Chatzigiannakis, I., Koulouris, P., Falkouskaya, Y., & Markopoulos, P. (2025). Results From a Large-Scale IoT-based Intervention for Energy Saving and Sustainability Awareness via Behavior Change in 25 K-12 Schools in Europe. IEEE Internet of Things Journal. Scopus. https://doi.org/10.1109/JIOT.2025.3544652

Oberdörfer, S., Elsässer, A., Grafe, S., & Latoschik, M. E. (2024). Superfrog: Comparing Learning Outcomes and Potentials of a Worksheet, Smartphone, and Tangible AR Learning Environment. In Bourguet M.-L., Krüger J.M., Pedrosa D., Dengel A., Peña-Rios A., & Richter J. (Eds.), Commun. Comput. Info. Sci.: Vol. 1904 CCIS (pp. 343–364). Springer Science and Business Media Deutschland GmbH; Scopus. https://doi.org/10.1007/978-3-031-47328-9_26

Paliwal, S., Gannon, P., Lauricella, E., Riddett, K. E., Badurdeen, F., & Elam, A. (2025). Spaceship Earth: A Sustainable Manufacturing Game. In Kohl H., Seliger G., Dietrich F., & Mur S. (Eds.), Lect. Notes Mech. Eng. (pp. 856–863). Springer Science and Business Media Deutschland GmbH; Scopus. https://doi.org/10.1007/978-3-031-77429-4_95

Roopaei, M., & Roopaei, R. (2024). Gamifying AI Education for Young Minds: The TransAI Adventure in Learning. In Paul R., Kundu A., & Bhattacharyya R. (Eds.), IEEE World AI IoT Congr., AIIoT (pp. 129–134). Institute of Electrical and Electronics Engineers Inc.; Scopus. https://doi.org/10.1109/AIIoT61789.2024.10578991

Schlechter, T., Kopylov, P., Wegen, J., Manfredi, K., Nicoletti, L., Padovano, A., Cardamone, M., Francalanza, E., & Seidl, M. (2024). Development and case study of an Industry 5.0 ready human-centric related brewing plant. Agronomy Research, 22(2), 956–969. Scopus. https://doi.org/10.15159/AR.24.068

Shaikh, M. S., & Ali, S. I. (2025). Revolutionizing the impact of education using advanced online tools. In Revolutionizing Educ. With Remote Exp. And Learn. Anal. (pp. 471–488). IGI Global; Scopus. https://doi.org/10.4018/979-8-3693-8593-7.ch028

Simsek, A. (2024). How will education look like in the future? Contemporary Educational Technology, 16(3). Scopus. https://doi.org/10.30935/cedtech/14794

Siregar, R., Nasikun, A., & Ferdiana, R. (2024). Immersive Virtual Reality-based Serious Game for Fire Drill Education. ICITEE - Proc. Int. Conf. Inf. Technol. Electr. Eng., 358–363. Scopus. https://doi.org/10.1109/ICITEE62483.2024.10808388

Soundarya, N. P., Kumar, T., & Gupta, H. K. (2024). A Framework to Deploy Immersive Technologies for Effective Education. In Alareeni B. & Hamdan A. (Eds.), Lect. Notes Networks Syst.: Vol. 1080 LNNS (pp. 216–225). Springer Science and Business Media Deutschland GmbH; Scopus. https://doi.org/10.1007/978-3-031-67444-0_21

Sun, G. (2024). Blockchain-Supported Platform for Collaborative Livestreaming of STEM Courses. Int. Conf. Electron. Inf. Eng. Comput. Technol., EIECT, 528–533. Scopus. https://doi.org/10.1109/EIECT64462.2024.10866675

Tonkal, M., Wu, A., & Rogers, C. (2024). Exploring the Impact of Systems Engineering Projects on STEM Engagement and Learning. Proc. Front. Educ. Conf. FIE. Proceedings - Frontiers in Education Conference, FIE. Scopus. https://doi.org/10.1109/FIE61694.2024.10893437

Uluskan, S. (2024). EDUPERES and GAMERES: A smart interactive education platform and digital gamification for basic circuit analysis. Computer Applications in Engineering Education, 32(4). Scopus. https://doi.org/10.1002/cae.22754

Authors

Sulistyorini Sulistyorini
sulistyorini@uinsatu.ac.id (Primary Contact)
Roya Zahir
Zara Ali
Sulistyorini, S., Zahir, R., & Ali, Z. (2025). Creative Leadership in Digital Startups: A Longitudinal Case Study in Innovation Management. Journal of Loomingulisus Ja Innovatsioon, 2(3), 168–184. https://doi.org/10.70177/innovatsioon.v2i3.2358

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