Nanocatalysis skill for evaluating catalytic activity, selectivity, and stability of nanomaterial catalysts
Scanned 9/2/2026
Install to Claude Code
npx -y skills add a5c-ai/babysitter --skill nanocatalyst-performance-analyzer --agent claude-codeInstalls into .claude/skills of the current project.
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---
name: nanocatalyst-performance-analyzer
description: Nanocatalysis skill for evaluating catalytic activity, selectivity, and stability of nanomaterial catalysts
allowed-tools:
- Read
- Write
- Glob
- Grep
- Bash
metadata:
specialization: nanotechnology
domain: science
category: applications
priority: medium
phase: 6
tools-libraries:
- Reaction kinetics analyzers
- BET surface area tools
graph:
domains: [domain:nanotechnology]
skillAreas: [skill-area:mathematical-reasoning, skill-area:physics-simulation, skill-area:data-analysis]
workflows: [workflow:experiment-design]
roles: [role:research-engineer]
---
# Nanocatalyst Performance Analyzer
## Purpose
The Nanocatalyst Performance Analyzer skill provides comprehensive evaluation of nanomaterial catalyst performance, enabling systematic assessment of activity, selectivity, and stability for catalytic applications.
## Capabilities
- Turnover frequency (TOF) calculation
- Selectivity analysis
- Activation energy determination
- Stability and recyclability testing
- Surface area normalization (BET)
- Reaction mechanism investigation
## Usage Guidelines
### Catalyst Evaluation
1. **Activity Assessment**
- Measure conversion vs time
- Calculate TOF
- Normalize to surface area
2. **Selectivity Analysis**
- Identify products
- Calculate selectivities
- Map reaction pathways
3. **Stability Testing**
- Run recyclability tests
- Monitor deactivation
- Characterize spent catalyst
## Process Integration
- Nanocatalyst Development and Performance Optimization
## Input Schema
```json
{
"catalyst_id": "string",
"reaction": "string",
"reactants": [{"name": "string", "concentration": "number"}],
"temperature": "number (C)",
"pressure": "number (atm)",
"catalyst_mass": "number (mg)"
}
```
## Output Schema
```json
{
"activity": {
"conversion": "number (%)",
"tof": "number (1/s)",
"specific_activity": "number (mol/g/s)"
},
"selectivity": [{
"product": "string",
"selectivity": "number (%)"
}],
"kinetics": {
"activation_energy": "number (kJ/mol)",
"rate_law": "string"
},
"stability": {
"cycles_tested": "number",
"activity_retention": "number (%)"
}
}
```
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