Super-charge Your Bar Sales This Christmas With New Sexy Black Nitro Coffee Mixer

5 December 2018


Paddy & Scott's has launched Sexy Black Nitro Cold Brew Coffee, its most innovative product to date and one that is set to revolutionise the bar scene.

Pitched as the perfect, zero fat and calorie caffeinated coffee mixer, Sexy Black Nitro Cold Brew is black, smooth and velvety and is set to super-charge classic coffee cocktails and mocktails during the festive season and beyond.

Taking the time and hassle out of preparing coffee-based cocktails, Sexy Black Nitro can simply be chilled, opened and poured, adding a velvety richness to a range of cocktails such as the hugely popular espresso martini and white russian, but also as a fantastic mocktail ingredient as an alternative to fruit and juice based mocktails.

Sexy Black Nitro Cold Brew Coffee is available in tall 200ml cans which are easy to store and chill. It is made using 100% craft coffee which is brewed for 24 hours and then infused with nitrogen. It is also all-natural and sugar free, making it a zero calorie, guilt-free, vegan energy drink.

Perfect for bartenders, each 200ml can can be used to create up to three drinks, speeding up cocktail and mocktail prep time, whilst creating a new taste experience and a touch of theatre at the bar.

“We know how popular coffee-based cocktails have become, but brewing cups of espresso on the bar and chilling them to serve in cocktails is a slow and time-consuming process which often doesn't make financial sense for bar owners. With Sexy Black Nitro Cold Brew we've created a drink that gives bartenders a delicious, quick, easy and fun drink that customers will love. For non-drinkers it also adds a real complexity of flavour to mocktails,” explains Scott Russell, CEO and founder of Paddy & Scott's.



Privacy Policy
We have updated our privacy policy. In the latest update it explains what cookies are and how we use them on our site. To learn more about cookies and their benefits, please view our privacy policy. Please be aware that parts of this site will not function correctly if you disable cookies. By continuing to use this site, you consent to our use of cookies in accordance with our privacy policy unless you have disabled them.