Jack & Jones Honolulu AOP Shirt - Floral - White - Regular - M


The Jack & Jones Honolulu AOP Shirt is a stylish choice for adult males looking to add a touch of personality to their warm-weather wardrobe through its distinct floral pattern. Crafted from breathable cotton with a comfortable regular fit, it is perfect for casual outings or semi-formal summer events. One caveat to consider is that the shirt requires specific care instructions, including avoiding tumble drying, to maintain the integrity of the fabric and print over time.
| Gender | Male |
|---|---|
| Pattern | Floral |
| Age Group | adult |
| Colour | White |
| Fit | Regular |
| Material | Cotton |
| Size | M |
| Model Part Number | 12289667-4911231 |
| Brand | Jack & Jones |
While it is a stylish shirt, the floral print and short-sleeve design make it better suited for casual or semi-formal occasions rather than strict black-tie events.
No, the care instructions specifically state that you should not tumble dry this shirt to prevent damage to the cotton fibers and print.
This shirt is designed with a 'Regular' fit, which provides a standard, comfortable cut that offers room for movement without being overly baggy.
Yes, this garment is made from high-quality cotton, providing natural breathability.
Machine wash at 40 degrees Celsius. Do not use bleach.
Ensure you are using an appropriate amount of fabric softener and avoid high-heat air drying.
Iron the shirt while slightly damp using a low-to-medium heat setting to smooth out stubborn creases.
As a ready-to-wear garment, there is no setup required beyond checking the size fit. This regular fit shirt is compatible with most standard casual bottoms including jeans, shorts, and chinos. To ensure the longevity of your shirt, follow these care steps: machine wash on a cycle not exceeding 40 degrees Celsius. Do not use bleach products, as they will compromise the color of the floral print. Most importantly, avoid using a tumble dryer; instead, hang the shirt to air dry naturally to prevent shrinkage and fabric degradation.