Etching of crystals: theory, experiment and application K Sangwal Elsevier, 2012 | 652 | 2012 |
On the reverse indentation size effect and microhardness measurement of solids K Sangwal Materials Chemistry and Physics 63 (2), 145-152, 2000 | 550 | 2000 |
Additives and crystallization processes: from fundamentals to applications K Sangwal John Wiley & Sons, 2007 | 368 | 2007 |
Effects of impurities on crystal growth processes K Sangwal Progress in Crystal Growth and Characterization of Materials 32 (1-3), 3-43, 1996 | 302 | 1996 |
Growth kinetics and surface morphology of crystals grown from solutions: Recent observations and their interpretations K Sangwal Progress in Crystal Growth and Characterization of Materials 36 (3), 163-248, 1998 | 180 | 1998 |
On the estimation of surface entropy factor, interfacial tension, dissolution enthalpy and metastable zone-width for substances crystallizing from solution K Sangwal Journal of Crystal Growth 97 (2), 393-405, 1989 | 154 | 1989 |
Indentation size effect, indentation cracks and microhardness measurement of brittle crystalline solids–some basic concepts and trends K Sangwal Crystal Research and Technology 44 (10), 1019-1037, 2009 | 140 | 2009 |
Analysis of the indentation size effect in the microhardness measurement of some cobalt-based alloys K Sangwal, B Surowska, P Błaziak Materials Chemistry and Physics 77 (2), 511-520, 2003 | 139 | 2003 |
Novel approach to analyze metastable zone width determined by the polythermal method: physical interpretation of various parameters K Sangwal Crystal Growth and Design 9 (2), 942-950, 2009 | 136 | 2009 |
A novel self‐consistent Nývlt‐like equation for metastable zone width determined by the polythermal method K Sangwal Crystal Research and Technology 44 (3), 231-247, 2009 | 127 | 2009 |
Kinetic effects of impurities on the growth of single crystals from solutions K Sangwal Journal of Crystal Growth 203 (1-2), 197-212, 1999 | 116 | 1999 |
Relationship between indentation size effect and material properties in the microhardness measurement of some cobalt-based alloys K Sangwal, B Surowska, P Błaziak Materials Chemistry and Physics 80 (2), 428-437, 2003 | 91 | 2003 |
Study of indentation size effect and microhardness of SrLaAlO4 and SrLaGaO4 single crystals K Sangwal, B Surowska Materials Research Innovations 7 (2), 91-104, 2003 | 90 | 2003 |
Recent developments in understanding of the metastable zone width of different solute− solvent systems K Sangwal Journal of Crystal Growth 318 (1), 103-109, 2011 | 84 | 2011 |
Effect of impurities on metastable zone width for the growth of ammonium oxalate monohydrate crystals from aqueous solutions K Sangwal, E Mielniczek-Brzoska Journal of Crystal Growth 267 (3-4), 662-675, 2004 | 76 | 2004 |
Effect of impurities on the processes of crystal growth K Sangwal Journal of Crystal Growth 128 (1-4), 1236-1244, 1993 | 72 | 1993 |
Effect of impurities on the metastable zone width of solute–solvent systems K Sangwal Journal of Crystal Growth 311 (16), 4050-4061, 2009 | 69 | 2009 |
Relationship between density and refractive index of inorganic solids K Sangwal, W Kucharczyk Journal of Physics D: Applied Physics 20 (4), 522, 1987 | 65 | 1987 |
Surface morphology of crystalline solids K Sangwal, R Rodriguez-Clemente Trans Tech Publications, 1991 | 64 | 1991 |
Etching of MgO crystals in acids: kinetics and mechanism of dissolution K Sangwal, SK Arora Journal of Materials Science 13, 1977-1985, 1978 | 62 | 1978 |