Antique oak and matte black end table with a drawer and turned legs.
Antique oak and matte black end table with a drawer and turned legs.
Riverside Furniture

Barrington Two Tone Antique Oak And Matte Black End Table

$354.00$443.00
Save $89.00

Available at

colemanfurniture.comBest Price
$443.00$354.00
View

This transitional-style end table from Riverside Furniture's Barrington Two Tone Collection offers a unique blend of antique oak and matte black finishes. Crafted from poplar solids and ash veneer, it features a decorative hand-chiseled v-groove top panel, wood on wood drawer glides with dovetail joinery, and a fixed bottom shelf for added storage and display space. The drawer is accented with a small, circular brass or gold-toned knob, and the turned legs add a classic touch.

  • Part of Barrington Two Tone Collection from Riverside Furniture
  • Crafted from poplar solid and ash veneer
  • Antique oak and matte black finish
  • Wood on wood drawer glides
  • Dovetail joinery drawer construction
  • Top panel has decorative hand chiseled v grooves
  • Fixed bottom shelf

Details

Category
End Tables
Leg Material
Wood
Lumber Wood Type
Poplar wood, Ash wood
Tabletop Material
Wood
Tabletop Pattern
Solid
Tabletop Shape
Rectangular
Wood Finish
Solid wood
Materials
poplar solid, ash veneer

Questions & answers

How much does it cost, and where can I buy it?
This Riverside Furniture end table is sold by 1 retailer for $354.00. It's currently on sale (up to 20% off). Available at colemanfurniture.com.
Is it in stock?
Yes, it's currently in stock.
What are the key features?
Key features include Part of Barrington Two Tone Collection from Riverside Furniture, Crafted from poplar solid and ash veneer, Antique oak and matte black finish, Wood on wood drawer glides, and Dovetail joinery drawer construction.
What is it made of?
It's made of poplar solid and ash veneer.
What lumber/wood type options are available?
Its lumber/wood type options are poplar wood and ash wood.
What's its tabletop pattern?
Its tabletop pattern is solid.