Chemistry Labs

Problem 1

In 1956 Huisgen and Ugi obtained the compound PhX\ce{PhX} (A), unambiguously confirmed 27 years later by single-crystal X-ray diffraction. In 2001 quantum chemistry predicted the FeXX2\ce{FeX2} molecule (B) with FeX2+\ce{Fe^{2+}} and 2XX−2\ce{X-} binding energy close to the isoelectronic molecule FeYX2\ce{FeY2} (C, discovered in 1951, light-orange, mp 173 ∘C173\ ^{\circ}\mathrm{C}, bp 249 ∘C249\ ^{\circ}\mathrm{C}, stable to 450 ∘C450\ ^{\circ}\mathrm{C}). A derivative of A was later prepared from 4-methoxyaniline with NaQ\ce{NaQ}. Oxidation with CAN at −40 ∘C-40\ ^{\circ}\mathrm{C} in the presence of zinc nitrate gave the mixed salt Zn(X)(NOX3)\ce{Zn(X)(NO3)} (D). At −20 ∘C-20\ ^{\circ}\mathrm{C} D decomposes releasing a gas and another salt Zn(Q)(NOX3)\ce{Zn(Q)(NO3)} (E), containing the same elements as D, including 38.59 % zinc. The isomer F of B (obtained in 1999) is isoelectronic to iron compound G (a light-yellow liquid immiscible with cold water, used to prepare high-purity iron powder). In 2017 stable salt H was obtained: it contains XX−\ce{X-} anions, chloride, ammonium and hydronium (HX3OX+\ce{H3O+}) cations, with 4.31 % H, 81.42 % N and 6.06 % Cl. (1) Write the molecular formulas of HX\ce{HX}, D, E, and identify A–C. (2) Write equations for the synthesis of PhX\ce{PhX} by Huisgen and Ugi. (3) Identify F and G. (4) Calculate the formula of H.
Step 5 of 5: Formula of salt H
Mformula(H)=35.4530.0606=585 g mol−1⇒(HX3O)X3(NHX4)X4(NX5)X6Cl (formula: ClHX25NX34OX3)M_{\text{formula}}(\text{H}) = \frac{35.453}{0.0606} = 585\ \text{g mol}^{-1} \Rightarrow \ce{(H3O)3(NH4)4(N5)6Cl}\ (\text{formula: } \ce{ClH25N34O3})
Analysis

Assuming 1 Cl: M=585M = 585 g mol−1^{-1}, giving 25 H25\,\ce{H}, 34 N34\,\ce{N}, 3 O3\,\ce{O}. The 3 O require 3 HX3OX+3\,\ce{H3O+}, leaving 16 H16\,\ce{H} for 4 NHX4X+4\,\ce{NH4+}. The 7 positive charges are balanced by 1 ClX−1\,\ce{Cl-} and 6 NX5X−6\,\ce{N5-}, accounting for all 34 N34\,\ce{N}. Formula: (HX3O)X3(NHX4)X4(NX5)X6Cl\ce{(H3O)3(NH4)4(N5)6Cl}.