We are independent & ad-supported. We may earn a commission for purchases made through our links.

Advertiser Disclosure

Our website is an independent, advertising-supported platform. We provide our content free of charge to our readers, and to keep it that way, we rely on revenue generated through advertisements and affiliate partnerships. This means that when you click on certain links on our site and make a purchase, we may earn a commission. Learn more.

How We Make Money

We sustain our operations through affiliate commissions and advertising. If you click on an affiliate link and make a purchase, we may receive a commission from the merchant at no additional cost to you. We also display advertisements on our website, which help generate revenue to support our work and keep our content free for readers. Our editorial team operates independently from our advertising and affiliate partnerships to ensure that our content remains unbiased and focused on providing you with the best information and recommendations based on thorough research and honest evaluations. To remain transparent, we’ve provided a list of our current affiliate partners here.

In Chemistry, What Is a Bivalent?

By E.A. Sanker
Updated Feb 04, 2024
Our promise to you
WiseGEEK is dedicated to creating trustworthy, high-quality content that always prioritizes transparency, integrity, and inclusivity above all else. Our ensure that our content creation and review process includes rigorous fact-checking, evidence-based, and continual updates to ensure accuracy and reliability.

Our Promise to you

Founded in 2002, our company has been a trusted resource for readers seeking informative and engaging content. Our dedication to quality remains unwavering—and will never change. We follow a strict editorial policy, ensuring that our content is authored by highly qualified professionals and edited by subject matter experts. This guarantees that everything we publish is objective, accurate, and trustworthy.

Over the years, we've refined our approach to cover a wide range of topics, providing readers with reliable and practical advice to enhance their knowledge and skills. That's why millions of readers turn to us each year. Join us in celebrating the joy of learning, guided by standards you can trust.

Editorial Standards

At WiseGEEK, we are committed to creating content that you can trust. Our editorial process is designed to ensure that every piece of content we publish is accurate, reliable, and informative.

Our team of experienced writers and editors follows a strict set of guidelines to ensure the highest quality content. We conduct thorough research, fact-check all information, and rely on credible sources to back up our claims. Our content is reviewed by subject matter experts to ensure accuracy and clarity.

We believe in transparency and maintain editorial independence from our advertisers. Our team does not receive direct compensation from advertisers, allowing us to create unbiased content that prioritizes your interests.

In chemistry, bivalent is an older term for divalent, meaning an atom or ion with a valence of two. Valence refers to the number of covalent bonds that the atom or ion can form with other atoms. Covalent bonds are formed through the sharing of electrons in the outermost valence shell or orbit of an atom, so a bivalent atom or ion has, by definition, two valence electrons with which to form bonds. Bivalent anions and cations — ions with negative and positive charges, respectively — are important in many biological systems, including human metabolism.

Electrons can be visualized as orbiting the nucleus of an atom in a series of shells, each of which can only hold a certain number of electrons before it is filled. The shells closer to the nucleus are filled first. When atoms react with one another, they have the tendency to bond in such a way as to fill their outermost, or valence, shell of electrons. In almost every case, a full valence shell consists of eight electrons — the same valence configuration as elements in the noble gas family, the last vertical column on the periodic table of elements. The tendency for atoms to gain or lose electrons from other atoms to reach this stable valence octet is known as the octet rule.

Bivalent elements have two valence electrons, so the easiest way for them to achieve a full octet valence shell is to lose those two outer electrons, leaving the shell underneath filled instead. For example, when magnesium, which has two valence electrons, bonds with oxygen, which has six valence electrons, the oxygen atom gains the two electrons from magnesium to fill its octet. This forms the compound MgO, magnesium oxide.

In the periodic table, chemical elements with the same valence electron configuration are displayed in the same group, or vertical column. Members of each group tend to chemically react in a similar way due to their common number of valence electrons. Elements with two valence electrons are found in Group 2 and include beryllium, magnesium, calcium, strontium, and barium. Some transition metals, such as iron and manganese, can also exist in this form.

Bivalent ions are often important in chemistry as well. When an atom loses its two valence electrons but does not covalently bond, it becomes a positively charged ion, or cation. Similarly, an atom that gains electrons from its neutral state is said to be an anion. For example, sulfide, a bivalent anion, has a negative charge of two — it has two more electrons than protons. Magnesium and calcium, which commonly form bivalent cations, each have a positive charge of two.

Calcium and magnesium cations are often found in hard water, water with a high mineral content. They also play a major role in biological processes. Calcium cations, for example, bond to proteins in cells and act as messengers in signal transduction — in other words, they stimulate events within the cell. They are also crucial as a structural component of plant cell walls and in activating muscle contraction in animals.

WiseGEEK is dedicated to providing accurate and trustworthy information. We carefully select reputable sources and employ a rigorous fact-checking process to maintain the highest standards. To learn more about our commitment to accuracy, read our editorial process.

Discussion Comments

WiseGEEK, in your inbox

Our latest articles, guides, and more, delivered daily.

WiseGEEK, in your inbox

Our latest articles, guides, and more, delivered daily.