Research Background and Purpose: As the global climate crisis intensifies,
Digital Transformation (DT) is widely championed as the primary enabler of the Net-Zero
transition. However, the prevailing "Techno-Optimist" narrative often assumes a linear
r...
Research Background and Purpose: As the global climate crisis intensifies,
Digital Transformation (DT) is widely championed as the primary enabler of the Net-Zero
transition. However, the prevailing "Techno-Optimist" narrative often assumes a linear
relationship where increased digital maturity automatically leads to environmental
sustainability. This dissertation challenges that assumption, investigating the structural
conflicts between digital strategy, implementation, and actual carbon performance.
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Methodology: A Dual-Study Approach: To address this gap, the research
employs a mixed-methods design consisting of two distinct studies:
Study 1 (Conceptual): A Systematic Literature Review (SLR) of 72 peer-
reviewed articles published between 2018 and 2024 was conducted to synthesize
fragmented theoretical perspectives. This phase led to the development of the DTS-NZ
Framework, which conceptualizes the transition as an interaction between External
Drivers (Regulation) and Internal Capabilities.
Study 2 (Empirical): The framework underwent empirical validation through
Partial Least Squares Structural Equation Modeling (PLS-SEM) applied to a dataset
comprising 30 European nations (EU-27, United Kingdom, Norway, and Switzerland)
that represent the 2023 "Green Deal" landscape.
Key Findings: The empirical analysis identifies a significant "Digital-Carbon
Efficiency Paradox." The findings indicate a structural bifurcation within the transition in
the transition process.
The Carbon Burden of Strategy: Digital Strategy exerts a significant negative
impact on Net-Zero Performance (β = -0.761). This finding suggests that the initial phase
of strategic formulation and governance generates a "Policy Cost" or "Carbon Debt,"
consuming resources without yielding immediate environmental benefits. The Corrective
Power of Implementation: In contrast, Digital Implementation emerges as the only
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positive driver (β= +0.562). This result confirms that environmental gains are realized
only when organizations progress from planning to the comprehensive execution of
technologies such as artificial intelligence and digital twins.
Contribution and Implication: Drawing on these findings, the dissertation
introduces the "Digital-Carbon Efficiency Matrix (2023)." This management tool
categorizes organizations into four quadrants and identifies the "Carbon Burden Trap."
(characterized by high strategy and low implementation), and provides actionable key
performance indicators to support leaders in shifting from administrative compliance to
operational decarbonization.