notion-mcp-server
Servidor MCP de Notion
El Servidor MCP de Notion es una implementación de servidor del Protocolo de Contexto de Modelo (MCP) que permite a los asistentes de IA interactuar con la API de Notion. Este servidor, listo para producción, proporciona un conjunto completo de herramientas y puntos finales para leer, crear y modificar contenido de Notion mediante interacciones de lenguaje natural.
🚧 Desarrollo Activo : ¡Ya está disponible la compatibilidad con bases de datos! Se han añadido herramientas para comentarios y gestión de usuarios. Si este proyecto te resulta útil, considera darle una estrella; me ayuda a saber que este trabajo es valioso para la comunidad y motiva a seguir desarrollando.
📑 Índice de contenidos
Related MCP server: Notion MCP Server
🚀 Primeros pasos e integración
Proceso de configuración
Obtener una clave API de Notion
Crear una integración en Notion Developers
Copia tu clave API
Habilitar la integración para sus páginas
Seleccione una página existente o cree una nueva en Notion
Haga clic en el menú "..." en la esquina superior derecha
Vaya a "Conexiones"
Encuentre y habilite su integración desde la lista

Elija su método de integración
Siga una de las opciones de integración a continuación según su cliente MCP preferido
Pídale a su asistente de IA que interactúe con Notion
"Crear una nueva página con las tareas de hoy"
Actualizar mis notas de reunión en Notion
"Añadir viñetas a la página de notas de mi reunión"
"Crear una nueva base de datos para el seguimiento de proyectos"
"Añadir nuevas entradas a mi base de datos de tareas"
"Añadir un comentario a mi página de proyecto"
"Muéstrame todos los comentarios de este documento"
"Enumerar todos los usuarios en mi espacio de trabajo"
"Obtener información sobre un usuario específico"
Integración del cursor
Método 1: Usar mcp.json
Cree o edite el archivo
.cursor/mcp.jsonen el directorio de su proyecto:
{
"mcpServers": {
"notion-mcp-server": {
"command": "env NOTION_TOKEN=YOUR_KEY NOTION_PAGE_ID=YOUR_PAGE_ID npx",
"args": ["-y", "notion-mcp-server"]
}
}
}Reemplace
YOUR_KEYyYOUR_PAGE_IDcon su clave de API de Notion y el ID de página realesReinicie el cursor para aplicar los cambios
Método 2: Modo manual
Abra Cursor y vaya a Configuración
Vaya a la sección "MCP" o "Protocolo de contexto de modelo"
Haga clic en "Agregar servidor" o equivalente
Introduzca el siguiente comando en el campo correspondiente:
env NOTION_TOKEN=YOUR_KEY NOTION_PAGE_ID=YOUR_PAGE_ID npx -y notion-mcp-serverReemplace
YOUR_KEYyYOUR_PAGE_IDcon su clave de API de Notion y el ID de página realesGuarde la configuración y reinicie Cursor si es necesario
Integración de escritorio de Claude
Cree o edite el archivo
mcp.jsonen su directorio de configuración:
{
"mcpServers": {
"notion-mcp-server": {
"command": "npx",
"args": ["-y", "notion-mcp-server"],
"env": {
"NOTION_TOKEN": "YOUR_KEY",
"NOTION_PAGE_ID": "YOUR_PAGE_ID"
}
}
}
}Reemplace
YOUR_KEYyYOUR_PAGE_IDcon su clave de API de Notion y el ID de página realesReinicie Claude Desktop para aplicar los cambios
🌟 Características
📝 Integración con Notion : interactúa con bases de datos, páginas y bloques de Notion
🔌 Compatibilidad universal con MCP : funciona con todos los clientes MCP, incluidos Cursor, Claude Desktop, Cline y Zed
🔍 Recuperación de datos : obtenga información de páginas, bloques y bases de datos de Notion
✏️ Creación de contenido : crea y actualiza páginas y bloques de Notion
📊 Gestión de bloques : agregue, actualice y elimine bloques dentro de las páginas de Notion
💾 Operaciones de base de datos : crear, consultar y actualizar bases de datos
Operaciones por lotes : realice múltiples operaciones en una sola solicitud
🗑️ Archivar y restaurar : archivar y restaurar páginas de Notion
🔎 Funcionalidad de búsqueda : busca páginas y bases de datos de Notion por título
💬 Gestión de comentarios : obtenga, cree y responda comentarios en páginas y debates
👥 Gestión de usuarios : recupera usuarios del espacio de trabajo e información de usuarios
📚 Documentación
Herramientas disponibles
El servidor proporciona las siguientes herramientas consolidadas para interactuar con Notion:
notion_pages
Una herramienta integral para operaciones de página que incluye:
Crear nuevas páginas con contenido específico
Actualización de las propiedades de la página
Archivar páginas (mover a la papelera)
Restaurar páginas previamente archivadas
Búsqueda de páginas por título
Operaciones de ejemplo:
{
"payload": {
"action": "create_page", // One of: "create_page", "archive_page", "restore_page", "search_pages", "update_page_properties"
"params": {
// Parameters specific to the chosen action
}
}
}notion_blocks
Un kit de herramientas completo para operaciones de bloques que incluye:
Recuperando el contenido del bloque
Obteniendo bloques secundarios
Agregar nuevos bloques a un padre
Actualización de bloques existentes
Eliminando bloques
Realizar operaciones por lotes (añadir, actualizar, eliminar, mixtas)
Operaciones de ejemplo:
{
"payload": {
"action": "append_block_children", // One of: "append_block_children", "retrieve_block", "retrieve_block_children", "update_block", "delete_block", "batch_append_block_children", "batch_update_blocks", "batch_delete_blocks", "batch_mixed_operations"
"params": {
// Parameters specific to the chosen action
}
}
}notion_database
Una poderosa herramienta para interacciones con bases de datos que incluye:
Creación de nuevas bases de datos con propiedades personalizadas
Consulta de bases de datos con filtros y ordenamiento
Actualización de la estructura y las propiedades de la base de datos
Operaciones de ejemplo:
{
"payload": {
"action": "create_database", // One of: "create_database", "query_database", "update_database"
"params": {
// Parameters specific to the chosen action
}
}
}notion_comments
Una herramienta para gestionar comentarios sobre el contenido de Notion:
Recuperar comentarios de páginas y bloques
Agregar nuevos comentarios a las páginas
Respondiendo a las discusiones existentes
Operaciones de ejemplo:
{
"payload": {
"action": "get_comments", // One of: "get_comments", "add_page_comment", "add_discussion_comment"
"params": {
// Parameters specific to the chosen action
}
}
}notion_users
Una herramienta para acceder a la información del usuario:
Listado de todos los usuarios del espacio de trabajo
Obtener detalles sobre usuarios específicos
Recuperando información sobre el usuario actual del bot
Operaciones de ejemplo:
{
"payload": {
"action": "list_users", // One of: "list_users", "get_user", "get_bot_user"
"params": {
// Parameters specific to the chosen action
}
}
}Recursos disponibles
Actualmente, el servidor no expone ningún recurso y se centra en operaciones basadas en herramientas.
🛠 Desarrollo
Clonar el repositorio
git clone https://github.com/awkoy/notion-mcp-server.git cd notion-mcp-serverInstalar dependencias
npm installConfigurar variables de entorno
Crea un archivo
.envcon:NOTION_TOKEN=your_notion_api_key NOTION_PAGE_ID=your_notion_page_id
Construir el proyecto
npm run buildEjecutar el Inspector
npm run inspector
🔧 Detalles técnicos
Desarrollado con TypeScript y el SDK de MCP (versión 1.7.0+)
Utiliza el cliente API oficial de Notion (@notionhq/client v2.3.0+)
Sigue la especificación del Protocolo de Contexto de Modelo
Implementa herramientas para operaciones CRUD en páginas, bloques y bases de datos de Notion
Admite operaciones por lotes eficientes para optimizar el rendimiento
Valida la entrada/salida con esquemas Zod
❓ Solución de problemas
Problemas comunes
Errores de autenticación : asegúrese de que su token de Notion tenga los permisos correctos y que la integración esté habilitada para sus páginas/bases de datos
Problemas de acceso a la página : asegúrese de que su integración se haya agregado a las páginas a las que intenta acceder
Limitación de velocidad : Notion API tiene límites de velocidad: utilice operaciones por lotes para optimizar las solicitudes
Obtener ayuda
Crear un problema en el repositorio de GitHub
Consulte la documentación de la API de Notion
Visita los canales de la comunidad MCP para obtener ayuda
🤝 Contribuyendo
¡Agradecemos sus contribuciones! No dude en enviar una solicitud de incorporación de cambios.
Bifurcar el repositorio
Crea tu rama de funciones (
git checkout -b feature/amazing-feature)Confirme sus cambios (
git commit -m 'Add some amazing feature')Empujar a la rama (
git push origin feature/amazing-feature)Abrir una solicitud de extracción
📄 Licencia
Este proyecto está licenciado bajo la licencia MIT: consulte el archivo de LICENCIA para obtener más detalles.
Available Tools
3 toolsnotion_describeNotion DescribeARead-only
Return the JSON Schema and a working example for one operation, plus which tool runs it (notion_read or notion_write). Use this BEFORE calling the operation when the payload shape is non-trivial (query filters, structured block trees, database property definitions). For simple ops, just call it — errors carry the schema.
| Name | Required | Description | Default |
|---|---|---|---|
| operation | Yes | Operation name to describe, as listed by notion_read / notion_write. |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already declare readOnlyHint=true and destructiveHint=false. The description adds meaningful behavioral context: the tool returns both a schema and a working example, determines which sibling tool executes the operation, and that errors carry the schema, making the describe call skippable for simple operations. This goes beyond the structured annotations without contradicting them.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Two sentences with no filler. The primary return value is stated first, followed by precise usage conditions and an explicit exclusion case. Every clause earns its place.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For a lightweight describe tool with one parameter, clear annotations, and no output schema, the description fully covers what the agent needs: what it returns, when to call it, and when to skip it. The mention of notion_read/notion_write links it to its siblings adequately.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema coverage is 100% and the single parameter 'operation' is well-documented in the schema. The description adds only marginal semantic value by clarifying that the operation name is 'as listed by notion_read / notion_write', which is useful but largely redundant with the schema description. Baseline 3 is appropriate.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description names a specific verb ('Return') and resource ('JSON Schema and a working example for one operation, plus which tool runs it'). It clearly distinguishes this meta-tool from the sibling tools notion_read and notion_write by stating it describes operations rather than performing them.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
Explicitly states when to use it ('BEFORE calling the operation when the payload shape is non-trivial'), gives concrete examples of such cases, and explains when it is unnecessary ('For simple ops, just call it'). This is decisive routing guidance with no ambiguity.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
notion_readNotion ReadARead-onlyIdempotent
Run one Notion read operation by name. Nothing is modified.
Call: { operation, payload } — payload carries that operation's fields. Common: search_pages { query }, get_page { page_id }, get_page_markdown { page_id }, query_database { database_id, where? }, get_block_children { block_id }.
Responses are slimmed; pass verbose:true in payload for the raw Notion object. Every id field (page_id, block_id, database_id, view_id, …) also accepts a Notion URL, as copied from Share → Copy link. A block link's #fragment is used for block_id fields and a database link's ?v= for view_id fields.
If the payload is malformed, the error response includes the schema + a working example so you can correct and retry in one round-trip. Call notion_describe(operation) ahead of time only for complex shapes (query_database filters).
| Name | Required | Description | Default |
|---|---|---|---|
| payload | Yes | Operation parameters. Pass either single-op fields directly, or { items: [...], atomic?, idempotency_key?, concurrency? } for batch. | |
| operation | Yes | The read operation to run. This list is the complete menu of read operations enabled on this server; notion_describe(operation) returns any operation's full schema. |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already indicate read-only, idempotent, and non-destructive behavior; the description adds valuable behavioral details: responses are slimmed, verbose:true returns raw Notion objects, id fields accept Notion URLs with fragment/v parameters, and malformed payloads return a schema plus working example for one-round-trip retry.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Front-loaded with the core purpose, then the call shape, common operations, and edge-case behavior. Every sentence contributes actionable detail; no fluff or repetition of schema contents.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For a multi-operation read dispatcher with many enum values and no output schema, the description covers operation selection, payload examples, response verbosity, URL input flexibility, error recovery, and when to consult notion_describe. An agent has everything needed to call and recover from errors.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Although schema coverage is 100%, the description enriches parameter meaning substantially: it shows the { operation, payload } dispatch shape, gives per-operation example payloads, explains the verbose flag, and clarifies URL flexibility for every id field. This goes well beyond enum/property names in the schema.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
States a specific action and scope: 'Run one Notion read operation by name.' Immediately clarifies that 'Nothing is modified,' and lists common operations, making it distinguishable from notion_describe (which only returns schemas) and notion_write (which modifies).
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
Gives explicit routing guidance: 'Call notion_describe(operation) ahead of time only for complex shapes (query_database filters).' It also explains the call shape and provides concrete examples for common operations, so the agent knows how to select and invoke this tool.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
notion_writeNotion WriteADestructive
Run one Notion write operation by name. Archive, trash and delete operations remove content — confirm with the user before running them.
Two ways to call: • Single: { operation: "set_page_title", payload: { page_id, title } } • Batch: { operation: "set_page_title", payload: { items: [{page_id, title}, ...], atomic?: false, idempotency_key?: "...", concurrency?: 3 } } create_page, append_blocks, update_block and update_page_markdown also take a markdown string.
Responses are slimmed; pass verbose:true inside payload (single) or per item (batch) for the raw Notion object. Every id field (page_id, block_id, database_id, view_id, …) also accepts a Notion URL, as copied from Share → Copy link.
If the payload is malformed, the error response includes the schema + a working example so you can correct and retry in one round-trip. Call notion_describe(operation) ahead of time only for complex shapes (block trees, database property definitions, batch_mixed_blocks).
| Name | Required | Description | Default |
|---|---|---|---|
| payload | Yes | Operation parameters. Pass either single-op fields directly, or { items: [...], atomic?, idempotency_key?, concurrency? } for batch. | |
| operation | Yes | The write operation to run. This list is the complete menu of write operations enabled on this server; notion_describe(operation) returns any operation's full schema. |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Despite annotations already flagging destructive behavior, the description goes further by naming exactly which operations (archive, trash, delete) remove content and instructing the agent to confirm with the user. It also discloses response slimming, the verbose:true escape hatch, URL acceptance for IDs, and the error-recovery behavior. This adds significant value beyond the annotations and never contradicts them.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is compact for the complexity it covers, front-loading the core purpose and destructive warning. It uses bullet-like formatting for the call modes and keeps each sentence informative. It is a bit dense—three paragraphs of dense detail—but there is no filler or repetition; it earns its length.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For a tool with 26 operations, batch support, and no output schema, the description covers every critical aspect an agent needs: the destructive actions, call syntax, response slimming, URL handling, error feedback, and when to consult notion_describe. Nothing essential is missing; it even handles the malformed-payload case to keep the agent on track.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The input schema is minimal—payload is just an object with propertyNames and additionalProperties, so it conveys almost nothing about the actual shape. The description fills that void by explaining the single vs. batch call modes, the batch-specific fields (items, atomic, idempotency_key, concurrency), and the per-operation markdown strings. It also documents the verbose:true parameter and URL flexibility, all of which the schema omits.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description opens with a precise verb and resource: 'Run one Notion write operation by name.' It immediately distinguishes itself from the sibling tools (notion_read, notion_describe) by framing itself as the write dispatcher, and the long operation enum makes the scope unmistakable.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
It gives explicit guidance on when to call notion_describe for complex shapes and warns which operations are destructive, requiring user confirmation. However, it never explicitly contrasts with notion_read for reads, so the when-not-to-use instruction is only implied by the tool name rather than stated.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
Tool Schema Changelog
Recent tool additions, removals, and schema changes observed during successful MCP inspections.
4 tool updates
v3.0.1- Changed
notion_describe2 fields changed- changed
Input schema / $schemaPrevious value: -"http://json-schema.org/draft-07/schema#"New value: +"https://json-schema.org/draft/2020-12/schema" - changed
Input schema / properties / operation / descriptionPrevious value: -"Operation name to describe."New value: +"Operation name to describe, as listed by notion_read / notion_write."
- Removed
notion_execute - Added
notion_read - Added
notion_write
15 tool updates
v1.0.1- Removed
append_block_children - Removed
archive_page - Removed
batch_append_block_children - Removed
batch_delete_blocks - Removed
batch_mixed_operations - Removed
batch_update_blocks - Removed
create_page - Removed
delete_block - Added
notion_describe - Added
notion_execute - Removed
restore_page - Removed
retrieve_block - Removed
retrieve_block_children - Removed
search_pages - Removed
update_block
13 tool updates
v1.0.0- First observed
append_block_children - First observed
archive_page - First observed
batch_append_block_children - First observed
batch_delete_blocks - First observed
batch_mixed_operations - First observed
batch_update_blocks - First observed
create_page - First observed
delete_block - First observed
restore_page - First observed
retrieve_block - First observed
retrieve_block_children - First observed
search_pages - First observed
update_block
TDQS
Scored across 3 tools
notion_read, notion_describe, and notion_write have clearly separated intents: execute a read, fetch schema guidance, or execute a write. There is no overlap between tool purposes, and the payload-level operations are cleanly scoped by tool.
All tool names follow the same notion_ prefix with a single lowercase verb: read, describe, and write. The naming pattern is uniform, predictable, and easy for an agent to reason about.
Three tools is well-scoped for a dispatcher-style server because each tool covers a broad category of Notion operations. The count is not too thin, and each tool earns its place in the set.
The read/write tools cover core Notion workflows including search, page retrieval, database queries, block children, page creation, block appending, updates, and delete/archive operations. The main gap is that the full set of supported operation names is not explicitly enumerated, relying on describe/errors for discovery.
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