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Applications — Buildings

Buildings are our first market.

EnergyX brings together building-energy experience, generation technologies and engineering intelligence to improve how buildings produce and use power.

Each project begins with its physical conditions, energy needs and commercial requirements.

A practical place to begin.

Buildings account for more than half of global electricity consumption. They combine that demand with surfaces that can be evaluated for generation close to consumption.

Source: International Energy Agency (IEA), Energy Efficiency Policy Toolkit — Buildings. Not every roof, facade or window is technically or economically suitable.

They also bring demanding requirements: safety, appearance, durability, construction sequencing and long-term operation.

EnergyX's experience in this market helps translate those requirements into engineering decisions and practical delivery.

EnergyX company building, Korea — building-integrated photovoltaic facade. Drone footage, September 2026.

New construction and existing buildings.

New construction

Design while the design is flexible.

Evaluate energy demand, suitable generating surfaces and system integration while the design is still flexible. Compare options against the project's performance requirements, cost and delivery constraints.

Existing buildings

Begin with the existing asset.

Begin with measured demand where available, structural and electrical conditions, access and the remaining life of relevant components. Assess retrofit options against disruption, cost and expected benefit.

Suitability depends on application fit, usable area, demand and commercial context — assessed per asset, including structural, fire, electrical and maintenance review.

A project-specific scope.

We begin by defining the asset, the energy objective and the decisions to be made. The agreed scope may include energy analysis, integration engineering, evaluation of generation options and performance measurement.

Step 01

Assess

Energy analysis, site evaluation and definition of the decisions the project needs to make.

Step 02

Engineer

Integration engineering across generating surfaces, electrical systems and building requirements.

Step 03

Integrate

Photovoltaic and building-system integration delivered with the project's construction sequence.

Step 04

Measure

Commissioning and performance measurement against the design intent.

Product availability and delivery responsibilities are established for each project and location.

Today's capabilities. Tomorrow's technology.

Existing building-energy capabilities

Available today.

Current building-integrated photovoltaic products, engineering, integration and delivery services — each identified by its actual photovoltaic technology and confirmed per project and location.

Next-generation technology development

In development.

EnergyX is developing its next generation of technology: proprietary single-junction perovskite photovoltaics and intelligence for physical energy systems. Learn more about each programme and its current status on the technology pages.

EnergyX Foundry →    EnergyX Intelligence →

EnergyX DY-Building, Korea — completed 2023, the world's first Zero Energy Building Plus certified building (2025).

Evidence, project by project.

A project card states the client or an approved description, the location and completion period, EnergyX's actual role, the technology installed and the metric being reported — with modelled design results distinguished from measured operating results, and every reduction shown against its baseline.

EnergyX DY-Building is the first reference. Further projects are added as publication rights and complete records allow.

Read the project story →

Start with the asset and its energy needs.

Share the location, project stage, available information and outcome you are seeking. We will identify the appropriate technical and commercial next step.