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Protoly Protocol Builder

Protoly helps researchers document and share protocols across advanced materials, nanotechnology, biomaterials, polymers, semiconductors, energy materials, and chemical synthesis. Build reproducible workflows with structured steps, parameters, and metadata.

Why Protoly?

Built for advanced materials teams who value precision, reproducibility, and collaboration

Structured Documentation

Define reagents, steps, parameters, and conditions in a standardized, machine-readable format.

Collaborate & Share

Make protocols public, share with team members, or keep them private. Full control over visibility.

Clone & Customize

Start with proven protocols and adapt them to your specific research needs. Build on existing work.

Automation Ready

Build structured workflows that can be reviewed for NanoScience Lab automation.

Real Hardware Execution

Design in Protoly. Run through NanoScience Lab systems.

Protoly does not stop at writing or AI-assisted drafting. Its real differentiator is that a structured workflow can move toward execution on actual NanoScience Lab hardware.

01

Structured Protocol Design

Build the experiment in Step Builder with ordered steps, parameters, materials, and workflow logic that can be reviewed beyond plain text.

02

Review And Execution Planning

Finalize the workflow, then submit it for feasibility review, quotation, and execution preparation by NanoScience Lab.

03

Real Hardware Run

When approved, the workflow moves into supported NanoScience Lab hardware systems for managed execution and outcome delivery.

Featured Protocols

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Abstract: Gold nanoparticles have gained significant attention in nanomedicine due to their unique physicochemical properties, including nanoscale size, optical activity, chemical stability, biocompatibility, and ease of surface f...

gold nanoparticles, Turkevich method, drug delivery, nanomedicine, +2 more

Abstract: Folic acid-conjugated nanoparticles are widely investigated as model systems for targeted drug delivery and cancer nanomedicine research because folate receptors are overexpressed in several cancer cell models. This prot...

Folic acid conjugation, Targeted nanoparticles, Cancer cell targeting model, Folate receptor, +4 more

Abstract: Surface-enhanced Raman scattering (SERS)-ready nanoparticle-antibody probes are useful tools for biosensing, antigen recognition, immunoassay development, and nano-biointerface research. This protocol presents a Protoly-...

SERS probe, Nanoparticle-antibody conjugate, Gold nanoparticles, Silver nanoparticles, +4 more

Abstract: Antigen-antibody nanomaterial complexes are useful model systems for biosensing, immunoassay development, nano-biointerface studies, and targeted biomolecule recognition research. This protocol presents a Protoly-managed...

Antigen-antibody complex, Nanomaterial complex, Gold nanoparticles, Silver nanoparticles, +4 more

Abstract: Electrochemical glucose detection is a widely used model system for teaching biosensor chemistry, enzyme-based sensing, redox reactions, and analytical method development. This protocol presents a Protoly-managed and par...

• Electrochemical glucose detection, • Glucose oxidase, • Biosensor model, • Enzyme-based sensing, +4 more

Abstract: Catalase is an important antioxidant enzyme that protects biological systems by decomposing hydrogen peroxide into water and oxygen. The hydrogen peroxide decomposition reaction is widely used as a simple model for demon...

Catalase activity, Hydrogen peroxide decomposition, Enzyme kinetics, Automation-assisted assay, +4 more

Abstract: Chitosan-based hydrogels are important biopolymer systems used in biomedical material research, drug delivery models, wound dressing prototypes, cosmetic formulations, and bioadhesive formulation studies. This protocol p...

Chitosan hydrogel, Bio-hydrogel, Biopolymer formulation, Hydrogel prototype, +4 more

Abstract: Nano-liposomes are vesicular lipid-based nanocarriers widely studied for drug delivery, model encapsulation, vaccine research, cosmetic delivery systems, and controlled-release formulation development. This protocol pres...

Nano-liposome, Liposome preparation, Drug delivery model, Lipid vesicles, +4 more

Abstract: This protocol aims to synthesize zinc manganese oxide nanomaterial with controlled composition, reproducibility, and functional properties for advanced material applications. The objective is to prepare a stable mixed me...

Zinc Manganese Oxide, Mixed metal oxide, Wet-chemical synthesis, Nanomaterial synthesis

Abstract: This protocol describes the synthesis of copper oxide nanoparticles, classified as a copper-based inorganic nanomaterial, using a simple wet-chemical precipitation approach. The objective is to prepare stable CuO nanopar...

Copper oxide nanoparticles, Inorganic nanomaterials, material oxide nanomaterials, Urchin Like

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