© Chemical Engineering Department, IITG
Electroless Plating:

1. Bulasara V. K., Abhimanyu M.S., Pranav T., Uppaluri R., Purkait M. K. (2012).  Performance characteristics of nickel-ceramic composite membranes fabricated with hydrothermal mass transfer coupled electroless plating baths. Desalination, 284, 77-85.

2. Bulasara V. K., Mahesh Babu Ch. S. N., Uppaluri R. (2012). Effect of surfactants on performance of electroless plating baths for nickel-ceramic composite membrane fabrication, Surface Engineering, 28 (1), 44-48.

3. Bulasara V. K., Chandrasekhar O., Uppaluri R. (2011).  Effect of surface roughness and mass transfer enhancement on the performance characteristics of nickel-hypophosphite electroless plating baths for metal-ceramic composite membrane fabrication, Chemical Engineering Research and Design, 89 (11), 2485-2494.

4. Bulasara V. K., Uppaluri R., Thakuria H. and Purkait M. K. (2011). Combinatorial performance characteristics of agitated nickel hypophosphite electroless plating baths, Journal of Material Process Technology, 211(9), 1488-1499.

5. Bulasara V. K., Uppaluri R., Thakuria H. and Purkait M. K. (2011). Nickel-ceramic composite membranes: Optimization of hydrazine based electroless plating process parameters, Desalination, 275(1-3), 243-251.

6. Bulasara V. K., Uppaluri R. and Purkait M. K. (2012). Effect of Ultrasound on the performance of nickel hydrazine electroless plating baths, Materials and Manufacturing Processes, 27, 201-206.

7. Bulasara V. K., Uppaluri R. and Purkait M. K. (2011).  Manufacture of nickel-ceramic composite membranes in agitated electroless plating baths, Materials and Manufacturing Processes, 26(6), 862-869.

8. Bulasara V. K., Thakuria H., Uppaluri R. and Purkait M. K. (2011).  Effect of process parameters on electroless plating and nickel-ceramic composite membrane characteristics, Desalination, 268 (1-3), 195-203.
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