Collect the 2018 Guilds of Ravnica Promos Ionize foil card (179s), a powerful counter spell from Magic: The Gathering featuring art by Chase Stone.
Ionize
2018 • Magic: The Gathering • Guilds of Ravnica Promos
No Listings Available
No listings available right now.
Price History
Description
The Ionize foil card, designated as 179s, is a key piece from the 2018 Guilds of Ravnica Promos set in Magic: The Gathering. This Instant card costs {1}{U}{R} and offers a potent defensive option by countering a target spell while dealing 2 damage to its controller. Designed by artist Chase Stone, this release is part of the broader Guilds of Ravnica product line, appealing to players who value strategic depth alongside collectible finishes. This foil version stands out with its bold finish, making it a desirable addition for those building specialized collections. Collectors often seek these promo cards not just for gameplay utility, but for their rarity and the specific era they represent in Magic's history. Whether you are looking to complete a set of Guilds of Ravnica Promos or add a versatile counter spell to your collection, this Ionize foil card offers both aesthetic appeal and mechanical impact.
Have one of these to sell?
We'll pre-fill the product details from this catalog entry, so your listing lands on this exact page. Just add photos of your copy, pick its condition, and set your price.
Card Details
The catalog profile below summarizes the card identity, featured subject, and notable collectible traits.
Catalog Profile
The core identity of the card within the set.
Featured Subject
The subject, team, league, and sport context tied to this card.
Featured
Ionize
Game
Magic: The Gathering
TCG Attributes
Rarity, print treatment, and game-specific stats for this card.
Rare
Chase Stone
Card Stock
English
Foil
{1}{U}{R}
Instant
R, U
Card Text
Abilities, attacks, oracle text, and flavor text printed on the card.
Counter target spell. Ionize deals 2 damage to that spell's controller.
"Countermagic is a simple process of breaking matter into its elementary particles."
