Acid Stocks List

Acid Stocks Recent News

Date Stock Title
Nov 21 IDXX IDEXX Laboratories CFO Brian McKeon to step down
Nov 21 IDXX IDEXX Announces CFO Transition
Nov 20 A Agilent Technologies increases dividend by ~5% to $0.248
Nov 20 A Agilent Increases Cash Dividend to 24.8 Cents per Share
Nov 20 GSK CDC warns of an imminent spike in COVID, flu cases
Nov 20 SLN SLN Stock Down Despite Cholesterol Drug Lowering Lipoprotein Levels
Nov 20 A Stay Ahead of the Game With Agilent (A) Q4 Earnings: Wall Street's Insights on Key Metrics
Nov 20 CE Henkel and Celanese collaborate to offer adhesives made from captured CO2 emissions
Nov 20 A Agilent 2024 Early Career Professor Award Presented to Adeyemi Adeleye
Nov 20 CE Celanese price target lowered to $88 from $101 at Barclays
Nov 19 A Agilent Ranks No. 11 on Fortune’s List of Best Workplaces in the World
Nov 19 SLN Silence Therapeutics' Zerlasiran Has Competitive Concerns: Analyst
Nov 19 GSK GSK's Investigational Liver Disease Candidate Hits Primary Goal In Late-Stage Study To Treat Relentless Itch In Some Patients
Nov 19 GSK GSK's Investigational Liver Disease Candidate Hits Primary Goal In Late-Stage Study To Treat Relentless Itch In Some Patients
Nov 19 GSK GSK reports positive Phase 3 results for linerixibat in PBC itching
Nov 19 CE Celanese Corporation (CE): An Oversold Midcap Stock to Buy
Nov 19 IDXX IDEXX Laboratories (NASDAQ:IDXX) Has A Rock Solid Balance Sheet
Nov 19 CE Celanese Releases 2023-2024 Sustainability Report and Index
Nov 19 OLN Plexus and Olin have been highlighted as Zacks Bull and Bear of the Day
Nov 19 SLN Top 3 Health Care Stocks You'll Regret Missing In Q4
Acid

An acid is a molecule or ion capable of donating a hydron (proton or hydrogen ion H+), or, alternatively, capable of forming a covalent bond with an electron pair (a Lewis acid).The first category of acids is the proton donors or Brønsted acids. In the special case of aqueous solutions, proton donors form the hydronium ion H3O+ and are known as Arrhenius acids. Brønsted and Lowry generalized the Arrhenius theory to include non-aqueous solvents. A Brønsted or Arrhenius acid usually contains a hydrogen atom bonded to a chemical structure that is still energetically favorable after loss of H+.
Aqueous Arrhenius acids have characteristic properties which provide a practical description of an acid. Acids form aqueous solutions with a sour taste, can turn blue litmus red, and react with bases and certain metals (like calcium) to form salts. The word acid is derived from the Latin acidus/acēre meaning sour. An aqueous solution of an acid has a pH less than 7 and is colloquially also referred to as 'acid' (as in 'dissolved in acid'), while the strict definition refers only to the solute. A lower pH means a higher acidity, and thus a higher concentration of positive hydrogen ions in the solution. Chemicals or substances having the property of an acid are said to be acidic.
Common aqueous acids include hydrochloric acid (a solution of hydrogen chloride which is found in gastric acid in the stomach and activates digestive enzymes), acetic acid (vinegar is a dilute aqueous solution of this liquid), sulfuric acid (used in car batteries), and citric acid (found in citrus fruits). As these examples show, acids (in the colloquial sense) can be solutions or pure substances, and can be derived from acids (in the strict sense) that are solids, liquids, or gases. Strong acids and some concentrated weak acids are corrosive, but there are exceptions such as carboranes and boric acid.
The second category of acids are Lewis acids, which form a covalent bond with an electron pair. An example is boron trifluoride (BF3), whose boron atom has a vacant orbital which can form a covalent bond by sharing a lone pair of electrons on an atom in a base, for example the nitrogen atom in ammonia (NH3). Lewis considered this as a generalization of the Brønsted definition, so that an acid is a chemical species that accepts electron pairs either directly or by releasing protons (H+) into the solution, which then accept electron pairs. However, hydrogen chloride, acetic acid, and most other Brønsted-Lowry acids cannot form a covalent bond with an electron pair and are therefore not Lewis acids. Conversely, many Lewis acids are not Arrhenius or Brønsted-Lowry acids. In modern terminology, an acid is implicitly a Brønsted acid and not a Lewis acid, since chemists almost always refer to a Lewis acid explicitly as a Lewis acid.

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