↑(en) B. N. Khare, Carl Sagan, E. T. Arakawa, F. Suits, T. A. Callcott et M. W. Williams, « Optical constants of organic tholins produced in a simulated Titanian atmosphere: From soft x-ray to microwave frequencies », Icarus, vol. 60, no 1, , p. 127-137 (DOI10.1016/0019-1035(84)90142-8, Bibcode1984Icar...60..127K, lire en ligne, consulté le )
↑(en) Bishun N. Khare, E. L. O. Bakes, Hiroshi Imanaka, Christopher P. McKay, Dale P. Cruikshank et Edward T. Arakawa, « Analysis of the Time-Dependent Chemical Evolution of Titan Haze Tholin », Icarus, vol. 160, no 1, , p. 172-182 (DOI10.1006/icar.2002.6899, Bibcode2002Icar..160..172K, lire en ligne, consulté le )
↑(en) Carl Sagan, W. Reid Thompson et Bishun N. Khare, « Titan: a laboratory for prebiological organic chemistry », Accounts of Chemical Research, vol. 25, no 7, , p. 286-292 (PMID11537156, DOI10.1021/ar00019a003, lire en ligne)
↑(en) Bishun N. Khare, M. Meyyappan, Joel Kralj, Patrick Wilhite, Metagus Sisay, Hiroshi Imanaka, Jessica Koehne et Charles W. Baushchlicher Jr., « A glow-discharge approach for functionalization of carbon nanotubes », Applied Physics Letters, vol. 81, no 5237, (DOI10.1063/1.1533859, Bibcode2002ApPhL..81.5237K, lire en ligne)
↑(en) Bishun N. Khare, Patrick Wilhite, Richard C. Quinn, Bin Chen, Robert H. Schingler, Benjamin Tran, Hiroshi Imanaka, Christopher R. So, Charles W. Bauschlicher et M. Meyyappan, « Functionalization of Carbon Nanotubes by Ammonia Glow-Discharge: Experiments and Modeling », The Journal of Physical Chemistry B, vol. 108, no 24, , p. 8166-8172 (DOI10.1021/jp049359q, lire en ligne)